Claims
- 1. An isolated polypeptide having a sequence of Formula I
- 2. The isolated polypeptide of claim 1 wherein the substitutions upon the alpha-carbon atoms of Y and Z are selected from the group consisting of heteroarylarylmethyl, arylheteroarylmethyl or biphenylmethyl forming biphenylalanine residues, any of which is also optionally substituted with one or more, hydrogen, alkyl, cycloalkyl, arylalkyl, aryl, heterocyclyl, heteroaryl, alkenyl, alkynyl, halo, hydroxy, mercapto, nitro, cyano, amino, acylamino, azido, guanidino, amidino, carboxyl, carboxamido, carboxamido alkyl, formyl, acyl, carboxyl alkyl, alkoxy, aryloxy, arylalkyloxy, heteroaryloxy, heterocycleoxy, acyloxy, mercapto, mercapto alkyl, mercaptoaryl, mercapto acyl, halo, cyano, nitro, azido, amino, guanidino alkyl, guanidino acyl, sulfonic, sulfonamido, alkyl sulfonyl, aryl sulfonyl and phosphonic group.
- 3. The isolated polypeptide of claim 1 wherein B is an amino acid or peptide containing 1 to about 10 amino acid residues.
- 4. The isolated polypeptide of claim 3 wherein B is an amino acid or peptide containing 1 to about 5 amino acid residues.
- 5. The isolated polypeptide of claim 1 wherein Xaa1, Xaa2 and Xaa3 are N—H or N-alkylated amino acid residues.
- 6. The isolated polypeptide of claim 5 wherein Xaa1, Xaa2 and Xaa3 are N—H or N-methylated amino acid residues.
- 7. The isolated polypeptide of claim 1 wherein the other substitution at the alpha-carbon of Y is substituted with hydrogen, methyl or ethyl; and wherein, the other substitution at the alpha-carbon of Z is substituted with hydrogen, methyl or ethyl.
- 8. The isolated polypeptide of claim 1 wherein Xaa1 is naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is a primary substituent selected from the group consisting of heterocyclylalkyl, heteroaryl, heteroarylkalkyl and arylalkyl, said primary substituent optionally being substituted with secondary substituent selected from heteroaryl or heterocyclyl; and in which the other substitution at the alpha-carbon is hydrogen or alkyl;
Xaa2 is naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is an alkyl or cycloalkyl where the alkyl group may optionally form a ring with the nitrogen of Xaa2; and wherein the other substitution at the alpha-carbon is hydrogen or alkyl; Xaa3 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is selected from the group consisting of a carboxyalkyl, bis-carboxyalkyl, sulfonylalkyl, heteroalkyl and mercaptoalkyl; and wherein the other substituion at the alpha-carbon is hydrogen or alkyl; Xaa4 is a naturally or nonnaturally occurring amino acid residue in which the alpha-carbon is not substituted, or in which one of the substitutions at the alpha-carbon is selected from the group consisting of aminoalkyl, carboxyalkyl heteroarylalkyl and heterocycylalkyl; Xaa5 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is an alkyl or hydroxyalkyl, and in which the other substitution at the alpha-carbon is hydrogen or alkyl; Xaa6 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is selected from the group consisting of alkyl, aryl, heteroaryl, heterocyclyl, cycloalkylalkyl, heterocyclylalkyl, arylalkyl and heteroarylalkyl group, and wherein the other substitution at the alpha-carbon is hydrogen or alkyl; Xaa7 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is a hydroxylalkyl group; Xaa8 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is selected from the group consisting of alkyl, hydroxylalkyl, heteroarylalkyl and carboxamidoalkyl, and in which the other substitution at the alpha-carbon is hydrogen or alkyl; Xaa9 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at alpha-carbon is selected from the group consisting of carboxylalkyl, bis-carboxylalkyl, carboxylaryl, sulfonylalkyl, carboxylamidoalkyl and heteroarylalkyl; and wherein A is hydrogen, an amino acid or peptide containing from about 1 to about 5 amino acid residues, an R group, an R—C(O) amide group, a carbamate group RO—C(O), a urea R4R5N—C(O), a sulfonamido R—SO2 or a R4R5N—SO2.
- 9. The isolated polypeptide of claim 8 wherein
Xaa1 is an amino acid residue selected from the group consisting of L-His, D-His, L-N-Methyl-His, D-N-Methyl-His, L-4-ThiazolylAla and D-4-ThiazolylAla; Xaa2 is an amino acid residue selected from the group consisting of L-Ala, D-Ala, L-Pro, Gly, D-Ser, D-Asn, L-N-Methyl-Ala, D-N-Methyl-Ala, L-4-ThioPro, L-Pro(t-4-OH), L-2-Pip, L-2-Azt, Aib, S- or R-Iva and Acc3; Xaa3 is an amino acid residue selected from the group consisting of L-Glu, L-N-Methyl-Glu, L-Asp, D-Asp, L-His, L-Gla, L-Adp, L-Cys and L-4-ThiazolylAla; Xaa4 is an amino acid residue selected from the group consisting of Gly, L-His, L-Lys and L-Asp; Xaa5 is an amino acid residue selected from the group consisting of L-Thr, D-Thr, L-Nle, L-Met, L-Nva and L-Aoc; Xaa6 is an amino acid residue selected from the group consisting of L-Phe, L-Tyr, L-Tyr(Bzl), Tyr(3-NO2), L-Nle, L-Trp, L-Phe(penta-Fluoro), D-Phe(penta-Fluoro), Phe(2-Fluoro), Phe(3-Fluoro), Phe(4-Fluoro), Phe(2,3-di-Fluoro), Phe(3,4-di-Fluoro), Phe(3,5-di-Fluoro), L-Phe(2,6-di-Fluoro), Phe(3,4,5-tri-Fluoro), Phe(2-Iodo), Phe(2-OH), Phe(2-OMethyl), Phe(3-OMethyl), Phe(3-Cyano), Phe(2-Chloro), Phe(2-NH2), Phe(3-NH2), Phe(4-NH2), Phe(4-NO2), Phe(4-Methyl), Phe(4-Allyl), Phe(n-butyl), Phe(4-Cyclohexyl), Phe(4-Cyclohexyloxy), Phe(4-Phenyloxy), 2-NaphthylAla, 2-PyridylAla, L-4-ThiazolylAla, L-2-Thi, L-α-Me-Phe, D-α-Me-Phe, L-α-Et-Phe, D-α-Et-Phe, L-α-Me-Phe(2-Fluoro), D-α-Me-Phe(2-Fluoro), L-α-Me-Phe(2,3-di-Fluoro), D-α-Me-Phe(2,3-di-Fluoro), L-α-Me-Phe(2,6-di-Fluoro), D-α-Me-Phe(2,6-di-Fluoro), L-α-Me-Phe(penta-Fluoro) and D-α-Me-Phe(penta-Fluoro); Xaa7 is an amino acid residue selected from the group consisting of L-Thr, D-Thr, L-Ser and L-hSer; Xaa8 is an amino acid residue selected from the group consisting of L-Ser, L-hSer, L-His, L-Asn and L-α-Me-Ser; and Xaa9 is an amino acid residue selected from the group consisting of L-Asp, L-Glu, L-Gla, L-Adp, L-Asn and L-His.
- 10. The isolated polypeptide of claim 1 wherein
Y is selected from the group consistng of L-Bip, D-Bip, L-Bip(2-Me), D-Bip(2-Me), L-Bip(2′-Me), L-Bip(2-Et), D-Bip(2-Et), L-Bip(3-Et), L-Bip(4-Et), L-Bip(2-n-Propyl), L-Bip(2-n-Propyl, 4-OMe), L-Bip(2-n-Propyl,2′-Me), L-Bip(3-Me), L-Bip(4-Me), L-Bip(2,3-di-Me), L-Bip(2,4-di-Me), L-Bip(2,6-di-Me), L-Bip(2,4-di-Et), L-Bip(2-Me, 2′-Me), L-Bip(2-Et, 2′-Me), L-Bip(2-Et, 2′-Et), L-Bip(2-Me,4-OMe), L-Bip(2-Et,4-OMe), D-Bip(2-Et,4-OMe), L-Bip(3-OMe), L-Bip(4-OMe), L-Bip(2,4,6-tri-Me), L-Bip(2,3-di-OMe), L-Bip(2,4-di-OMe), L-Bip(2,5-di-OMe), L-Bip(3,4-di-OMe), L-Bip(2-Et,4,5-di-OMe), L-Bip(3,4-Methylene-di-oxy), L-Bip(2-Et, 4,5-Methylene-di-oxy), L-Bip(2-CH2OH, 4-OMe), L-Bip(2-Ac), L-Bip(3-NH—Ac), L-Bip(4-NH—Ac), L-Bip(2,3-di-Chloro), L-Bip(2,4-di-Chloro), L-Bip(2,5-di-Chloro), L-Bip(3,4-di-Chloro), L-Bip(4-Fluoro), L-Bip(3,4-di-Fluoro), L-Bip(2,5-di-Fluoro), L-Bip(3-n-Propyl), L-Bip(4-n-Propyl), L-Bip(2-iso-Propyl), L-Bip(3-iso-Propyl), L-Bip(4-iso-Propyl), L-Bip(4-tert-Butyl), L-Bip(3-Phenyl), L-Bip(2-Chloro), L-Bip(3-Chloro), L-Bip(2-Fluoro), L-Bip(3-Fluoro), L-Bip(2-CF3), L-Bip(3-CF3), L-Bip(4-CF3), L-Bip(3-NO2), L-Bip(3-OCF3), L-Bip(4-OCF3), L-Bip(2-OEt), L-Bip(3-OEt), L-Bip(4-OEt), L-Bip(4-SMe), L-Bip(2-OH), L-Bip(3-OH), L-Bip(4-OH), L-Bip(2-CH2—COOH), L-Bip(3-CH2—COOH), L-Bip(4-CH2—COOH), L-Bip(2-CH2—NH2), L-Bip(3-CH2—NH2), L-Bip(4-CH2—NH2), L-Bip(2-CH2—OH), L-Bip(3-CH2—OH), L-Bip(4-CH2—OH), L-Phe[4-(1-propargyl)], L-Phe[4-(1-propenyl)], L-Phe[4-n-Butyl], L-Phe[4-Cyclohexyl], Phe(4-Phenyloxy), L-Phe(penta-Fluoro), L-2-(9,10-Dihydrophenanthrenyl)-Ala, 4-(2-Benzo(b)furan)-Phe, 4-(4-Dibenzofuran)-Phe, 4-(4-Phenoxathiin)-Phe, 4-(2-Benzo(b)thiophene)-Phe, , 4-(3-thiophene)-Phe, 4-(3-Quinoline)-Phe, 4-(2-Naphthyl)-Phe, 4-(1--Naphthyl)-Phe, 4-(4-(3,5-dimethylisoxazole))-Phe, 4-(2,4-dimethoxypyrimidine)-Phe, homoPhe, Tyr(Bzl), Phe(3,4-di-Chloro), Phe(4-Iodo), 2-Naphthyl-Ala, L-α-Me-Bip and D-α-Me-Bip; Z is selected from the group consisting of L-Bip, D-Bip, L-Bip(2-Me), D-Bip(2-Me), L-Bip(2′-Me), L-Bip(2-Et), D-Bip(2-Et), L-Bip(3-Me), L-Bip(4-Me), L-Bip(3-OMe), L-Bip(4-OMe), L-Bip(4-Et), L-Bip(2-n-Propyl,2′-Me), L-Bip(2,4-di-Me), L-Bip(2-Me, 2′-Me), L-Bip(2-Me,4-OMe), L-Bip(2-Et,4-OMe), D-Bip(2-Et,4-OMe), L-Bip(2,6-di-Me), L-Bip(2,4,6-tri-Me), L-Bip(2,3,4,5,-tetra-Me), L-Bip(3,4-di-OMe), L-Bip(2,5-di-OMe), L-Bip(3,4-Methylene-di-oxy), L-Bip(3-NH—Ac), L-Bip(2-iso-Propyl), L-Bip(4-iso-Propyl), L-Bip(2-Phenyl), L-Bip(4-Phenyl), L-Bip(2-Fluoro), L-Bip(4-CF3), L-Bip(4-OCF3), L-Bip(2-OEt), L-Bip(4-OEt), L-Bip(4-SMe), L-Bip(2-CH2—COOH), D-Bip(2-CH2—COOH), L-Bip(2′-CH2—COOH), L-Bip(3-CH2—COOH), L-Bip(4-CH2—COOH), L-Bip(2-CH2—NH2), L-Bip(3-CH2—NH2), L-Bip(4-CH2—NH2), L-Bip(2-CH2—OH), L-Bip(3-CH2—OH), L-Bip(4-CH2—OH), L-Phe(3-Phenyl), L-Phe[4-n-Butyl], L-Phe[4-Cyclohexyl], Phe(4-Phenyloxy), L-Phe(penta-Fluoro), L-2-(9,10-Dihydrophenanthrenyl)-Ala, 4-(3-Pyridyl)-Phe, 4-(2-Naphthyl)-Phe, 4-(1-Naphthyl)-Phe, 2-Naphthyl-Ala, 2-Fluorenyl-Ala, L-α-Me-Bip, D-α-Me-Bip, L-Phe(4-NO2) and L-Phe(4-Iodo); A is selected from the group consisting of H, Acetyl, β-Ala, Ahx, Gly, Asp, Glu, Phe, Lys, Nva, Asn, Arg, Ser, Thr, Val, Trp, Tyr, Caprolactam, L-Bip, L-Ser(Bzl), 3-PyridylAla, Phe(4-Me), Phe(penta-Fluoro), 4-Methylbenzyl, 4-Fluorobenzyl, n-propyl, n-hexyl, cyclohexylmethyl, 6-hydroxypentyl, 2-Thienylmethyl, 3-Thienylmethyl, penta-Fluorobenzyl, 2-naphthylmethyl, 4-biphenylmethyl, 9-Anthracenylmethyl, benzyl, (S)-(2-amino-3-phenyl)propyl, methyl, 2-aminoethyl and (S)-2-Aminopropyl; and B is selected from the group consisting of OH, NH2, Trp-NH2, 2-NaphthylAla-NH2, Phe(penta-Fluoro)-NH2, Ser(Bzl)-NH2, Phe(4-NO2)-NH2, 3-PyridylAla-NH2, Nva-NH2, Lys-NH2, Asp-NH2, Ser-NH2, His-NH2, Tyr-NH2, Phe-NH2, L-Bip-NH2, D-Ser-NH2, Gly-OH, β-Ala-OH, GABA-OH and APA-OH.
- 11. The isolated polypeptide of claim 1 wherein such polypeptide is a 10-mer to 15-mer and such polypeptide and binds to and activates the GLP-1 receptor.
- 12. An isolated polypeptide having a sequence of Formula I
- 13. The isolated polypeptide of claim 5 wherein the substitutions upon the alpha-carbon atoms of Y and Z are selected from the group consisting of heteroarylarylmethyl, arylheteroarylmethyl or biphenylmethyl forming biphenylalanine residues, any of which is also optionally substituted with one or more, hydrogen, alkyl, cycloalkyl, arylalkyl, aryl, heterocyclyl, heteroaryl, alkenyl, alkynyl, halo, hydroxy, mercapto, nitro, cyano, amino, acylamino, azido, guanidino, amidino, carboxyl, carboxamido, carboxamido alkyl, formyl, acyl, carboxyl alkyl, alkoxy, aryloxy, arylalkyloxy, heteroaryloxy, heterocycleoxy, acyloxy, mercapto, mercapto alkyl, mercaptoaryl, mercapto acyl, halo, cyano, nitro, azido, amino, guanidino alkyl, guanidino acyl, sulfonic, sulfonamido, alkyl sulfonyl, aryl sulfonyl and phosphonic group.
- 14. The isolated polypeptide of claim 12 wherein B is an amino acid or peptide containing 1 to about 10 amino acid residues.
- 15. The isolated polypeptide of claim 14 wherein B is an amino acid or peptide containing 1 to about 5 amino acid residues.
- 16. The isolated polypeptide of claim 12 wherein Xaa2 and Xaa3 are N—H or N-alkylated amino acid residues.
- 17. The isolated polypeptide of claim 16 wherein Xaa2 and Xaa3 are N—H or N-methylated amino acid residues.
- 18. The isolated polypeptide of claim 12 wherein the other substitution at the alpha-carbon of Y is substituted with hydrogen, methyl or ethyl, and wherein the other substitution at the alpha-carbon of Z is substituted with hydrogen, methyl or ethyl.
- 19. The isolated polypeptide of claim 12 wherein R, R4 and R5 are heteroarylalkyl or heterocycloalkyl, or R, R4 and R5 are cycloalkyl, cycloalkylalkyl, heterocycle, aryl, arylalkyl or aryloxyalkyl substituted with heteroaryl or heterocycle.
- 20. The isolated polypeptide of claim 12 wherein
Xaa2 is naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is an alkyl or cycloalkyl where the alkyl group may optionally form a ring with the nitrogen of Xaa2, and wherein the other substitution at the alpha-carbon is hydrogen or alkyl; Xaa3 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is selected from the group consisting of a carboxyalkyl, bis-carboxyalkyl, sulfonylalkyl, heteroalkyl and mercaptoalkyl; and wherein the other substituion at the alpha-carbon is hydrogen or alkyl; Xaa4 is a naturally or nonnaturally occurring amino acid residue in which the alpha-carbon is not substituted, or in which one of the substitutions at the alpha-carbon is selected from the group consisting of aminoalkyl, carboxyalkyl heteroarylalkyl and heterocycylalkyl; Xaa5 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is an alkyl or hydroxyalkyl, and in which the other substitution at the alpha-carbon is hydrogen or alkyl; Xaa6 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is selected from the group consisting of alkyl, aryl, heteroaryl, heterocycle, cycloalkylalkyl, heterocyclealkyl, arylalkyl and heteroarylalkyl, and wherein the other substitution at the alpha-carbon is hydrogen or alkyl; Xaa7 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is a hydroxylalkyl group; Xaa8 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is selected from the group consisting of alkyl, hydroxylalkyl, heteroarylalkyl and carboxamidoalkyl, and in which the other substitution at the alpha-carbon is hydrogen or alkyl; and Xaa9 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at alpha-carbon is selected from the group consisting of carboxylalkyl, bis-carboxylalkyl, carboxylaryl, sulfonylalkyl, carboxylamidoalkyl and heteroarylalkyl.
- 21. The isolated polypeptide of claim 20 wherein
Xaa2 is an amino acid residue selected from the group consisting of L-Ala, D-Ala, L-Pro, Gly, D-Ser, D-Asn, L-N-Methyl-Ala, D-N-Methyl-Ala, L-4-ThioPro, L-Pro(t-4-OH), L-2-Pip, L-2-Azt, Aib, S- or R-Iva and Acc3; Xaa3 is an amino acid residue selected from the group consisting of L-Glu, L-N-Methyl-Glu, L-Asp, D-Asp, L-His, L-Gla, L-Adp, L-Cys and L-4-ThiazolylAla; Xaa4 is an amino acid residue selected from the group consisting of Gly, L-His, L-Lys and L-Asp; Xaa5 is an amino acid residue selected from the group consisting of L-Thr, D-Thr, L-Nle, L-Met, L-Nva and L-Aoc; Xaa6 is an amino acid residue selected from the group consisting of L-Phe, L-Tyr, L-Tyr(Bzl), Tyr(3-NO2), L-Nle, L-Trp, L-Phe(penta-Fluoro), D-Phe(penta-Fluoro), Phe(2-Fluoro), Phe(3-Fluoro), Phe(4-Fluoro), Phe(2,3-di-Fluoro), Phe(3,4-di-Fluoro), Phe(3,5-di-Fluoro), L-Phe(2,6-di-Fluoro), Phe(3,4,5-tri-Fluoro), Phe(2-Iodo), Phe(2-OH), Phe(2-OMethyl), Phe(3-OMethyl), Phe(3-Cyano), Phe(2-Chloro), Phe(2-NH2), Phe(3-NH2), Phe(4-NH2), Phe(4-NO2), Phe(4-Methyl), Phe(4-Allyl), Phe(n-butyl), Phe(4-Cyclohexyl), Phe(4-Cyclohexyloxy), Phe(4-Phenyloxy), 2-NaphthylAla, 2-PyridylAla, L-4-ThiazolylAla, L-2-Thi, L-α-Me-Phe, D-α-Me-Phe, L-α-Et-Phe, D-α-Et-Phe, L-α-Me-Phe(2-Fluoro), D-α-Me-Phe(2-Fluoro), L-α-Me-Phe(2,3-di-Fluoro), D-α-Me-Phe(2,3-di-Fluoro), L-α-Me-Phe(2,6-di-Fluoro), D-α-Me-Phe(2,6-di-Fluoro), L-α-Me-Phe(penta-Fluoro) and D-α-Me-Phe(penta-Fluoro); Xaa7 is an amino acid residue selected from the group consisting of L-Thr, D-Thr, L-Ser and L-hSer; Xaa8 is an amino acid residue selected from the group consisting of L-Ser, L-hSer, L-His, L-Asn and L-α-Me-Ser; and Xaa9 is an amino acid residue selected from the group consisting of L-Asp, L-Glu, L-Gla, L-Adp, L-Asn and L-His.
- 22. The isolated polypeptide of claim 12 wherein
Y is selected from the group consisting of L-Bip, D-Bip, L-Bip(2-Me), D-Bip(2-Me), L-Bip(2′-Me), L-Bip(2-Et), D-Bip(2-Et), L-Bip(3-Et), L-Bip(4-Et), L-Bip(2-n-Propyl), L-Bip(2-n-Propyl, 4-OMe), L-Bip(2-n-Propyl,2′-Me), L-Bip(3-Me), L-Bip(4-Me), L-Bip(2,3-di-Me), L-Bip(2,4-di-Me), L-Bip(2,6-di-Me), L-Bip(2,4-di-Et), L-Bip(2-Me, 2′-Me), L-Bip(2-Et, 2′-Me), L-Bip(2-Et, 2′-Et), L-Bip(2-Me,4-OMe), L-Bip(2-Et,4-OMe), D-Bip(2-Et,4-OMe), L-Bip(3-OMe), L-Bip(4-OMe), L-Bip(2,4,6-tri-Me), L-Bip(2,3-di-OMe), L-Bip(2,4-di-OMe), L-Bip(2,5-di-OMe), L-Bip(3,4-di-OMe), L-Bip(2-Et,4,5-di-OMe), L-Bip(3,4-Methylene-di-oxy), L-Bip(2-Et, 4,5-Methylene-di-oxy), L-Bip(2-CH2OH, 4-OMe), L-Bip(2-Ac), L-Bip(3-NH—Ac), L-Bip(4-NH—Ac), L-Bip(2,3-di-Chloro), L-Bip(2,4-di-Chloro), L-Bip(2,5-di-Chloro), L-Bip(3,4-di-Chloro), L-Bip(4-Fluoro), L-Bip(3,4-di-Fluoro), L-Bip(2,5-di-Fluoro), L-Bip(3-n-Propyl), L-Bip(4-n-Propyl), L-Bip(2-iso-Propyl), L-Bip(3-iso-Propyl), L-Bip(4-iso-Propyl), L-Bip(4-tert-Butyl), L-Bip(3-Phenyl), L-Bip(2-Chloro), L-Bip(3-Chloro), L-Bip(2-Fluoro), L-Bip(3-Fluoro), L-Bip(2-CF3), L-Bip(3-CF3), L-Bip(4-CF3), L-Bip(3-NO2), L-Bip(3-OCF3), L-Bip(4-OCF3), L-Bip(2-OEt), L-Bip(3-OEt), L-Bip(4-OEt), L-Bip(4-SMe), L-Bip(2-OH), L-Bip(3-OH), L-Bip(4-OH), L-Bip(2-CH2—COOH), L-Bip(3-CH2—COOH), L-Bip(4-CH2—COOH), L-Bip(2-CH2—NH2), L-Bip(3-CH2—NH2), L-Bip(4-CH2—NH2), L-Bip(2-CH2—OH), L-Bip(3-CH2—OH), L-Bip(4-CH2—OH), L-Phe[4-(1-propargyl)], L-Phe[4-(1-propenyl)], L-Phe[4-n-Butyl], L-Phe[4-Cyclohexyl], Phe(4-Phenyloxy), L-Phe(penta-Fluoro), L-2-(9,10-Dihydrophenanthrenyl)-Ala, 4-(2-Benzo(b)furan)-Phe, 4-(4-Dibenzofuran)-Phe, 4-(4-Phenoxathiin)-Phe, 4-(2-Benzo(b)thiophene)-Phe, , 4-(3-thiophene)-Phe, 4-(3-Quinoline)-Phe, 4-(2-Naphthyl)-Phe, 4-(1-Naphthyl)-Phe, 4-(4-(3,5-dimethylisoxazole))-Phe, 4-(2,4-dimethoxypyrimidine)-Phe, homoPhe, Tyr(Bzl), Phe(3,4-di-Chloro), Phe(4-Iodo), 2-Naphthyl-Ala, L-α-Me-Bip and D-α-Me-Bip; Z is selected from the group consisting of L-Bip, D-Bip, L-Bip(2-Me), D-Bip(2-Me), L-Bip(2′-Me), L-Bip(2-Et), D-Bip(2-Et), L-Bip(3-Me), L-Bip(4-Me), L-Bip(3-OMe), L-Bip(4-OMe), L-Bip(4-Et), L-Bip(2-n-Propyl,2′-Me), L-Bip(2,4-di-Me), L-Bip(2-Me, 2′-Me), L-Bip(2-Me,4-OMe), L-Bip(2-Et,4-OMe), D-Bip(2-Et,4-OMe), L-Bip(2,6-di-Me), L-Bip(2,4,6-tri-Me), L-Bip(2,3,4,5,-tetra-Me), L-Bip(3,4-di-OMe), L-Bip(2,5-di-OMe), L-Bip(3,4-Methylene-di-oxy), L-Bip(3-NH—Ac), L-Bip(2-iso-Propyl), L-Bip(4-iso-Propyl), L-Bip(2-Phenyl), L-Bip(4-Phenyl), L-Bip(2-Fluoro), L-Bip(4-CF3), L-Bip(4-OCF3), L-Bip(2-OEt), L-Bip(4-OEt), L-Bip(4-SMe), L-Bip(2-CH2—COOH), D-Bip(2-CH2—COOH), L-Bip(2′-CH2—COOH), L-Bip(3-CH2—COOH), L-Bip(4-CH2—COOH), L-Bip(2-CH2—NH2), L-Bip(3-CH2—NH2), L-Bip(4-CH2—NH2), L-Bip(2-CH2—OH), L-Bip(3-CH2—OH), L-Bip(4-CH2—OH), L-Phe(3-Phenyl), L-Phe[4-n-Butyl], L-Phe[4-Cyclohexyl], Phe(4-Phenyloxy), L-Phe(penta-Fluoro), L-2-(9,10-Dihydrophenanthrenyl)-Ala, 4-(3-Pyridyl)-Phe, 4-(2-Naphthyl)-Phe, 4-(1-Naphthyl)-Phe, 2-Naphthyl-Ala, 2-Fluorenyl-Ala, L-α-Me-Bip, D-α-Me-Bip, L-Phe(4-NO2) and L-Phe(4-Iodo); and B is selected from the group consisting of OH, NH2, Trp-NH2, 2-NaphthylAla-NH2, Phe(penta-Fluoro)-NH2, Ser(Bzl)-NH2, Phe(4-NO2)-NH2, 3-PyridylAla-NH2, Nva-NH2, Lys-NH2, Asp-NH2, Ser-NH2, His-NH2, Tyr-NH2, Phe-NH2, L-Bip-NH2, D-Ser-NH2, Gly-OH, β-Ala-OH, GABA-OH and APA-OH.
- 23. The isolated polypeptide of claim 12 wherein such polypeptide is a 10-mer to 15-mer and such polypeptide and binds to and activates the GLP-1 receptor.
- 24. An isolated polypeptide having a sequence of Formula I
- 25. The isolated polypeptide of claim 24 wherein the substitutions upon the alpha-carbon atoms of Y are selected from the group consisting of heteroarylarylmethyl, arylheteroarylmethyl or biphenylmethyl forming biphenylalanine residues, any of which is also optionally substituted with one or more, hydrogen, alkyl, cycloalkyl, arylalkyl, aryl, heterocyclyl, heteroaryl, alkenyl, alkynyl, halo, hydroxy, mercapto, nitro, cyano, amino, acylamino, azido, guanidino, amidino, carboxyl, carboxamido, carboxamido alkyl, formyl, acyl, carboxyl alkyl, alkoxy, aryloxy, arylalkyloxy, heteroaryloxy, heterocycleoxy, acyloxy, mercapto, mercapto alkyl, mercaptoaryl, mercapto acyl, halo, cyano, nitro, azido, amino, guanidino alkyl, guanidino acyl, sulfonic, sulfonamido, alkyl sulfonyl, aryl sulfonyl and phosphonic group.
- 26. The isolated polypeptide of claim 24 wherein B is an amino acid or peptide containing 1 to about 10 amino acid residues.
- 27. The isolated polypeptide of claim 26 wherein B is an amino acid or peptide containing 1 to about 5 amino acid residues.
- 28. The isolated polypeptide of claim 24 wherein Xaa1, Xaa2 and Xaa3 are N—H or N-alkylated amino acid residues.
- 29. The isolated polypeptide of claim 28 wherein Xaa1, Xaa2 and Xaa3 are N—H or N-methylated amino acid residues.
- 30. The isolated polypeptide of claim 24 wherein the other substitution at the alpha-carbon of Y is substituted with hydrogen, methyl or ethyl.
- 31. The isolated polypeptide of claim 24 wherein
Xaa1 is naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is a primary substituent selected from the group consisting of heterocyclylalkyl, heteroaryl, heteroarylkalkyl, and arylalkyl, said primary substituent optionally being substituted with secondary substituent selected from heteroaryl or heterocyclyl, and wherein the other substitution at the alpha-carbon is hydrogen or alkyl; Xaa2 is naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is an alkyl or cycloalkyl where the alkyl group may optionally form a ring with the nitrogen of Xaa2, and wherein the other substitution at the alpha-carbon is hydrogen or alkyl; Xaa3 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is selected from the group consisting of a carboxyalkyl, bis-carboxyalkyl, sulfonylalkyl, heteroalkyl and mercaptoalkyl, and wherein the other substituion at the alpha-carbon is hydrogen or alkyl; Xaa4 is a naturally or nonnaturally occurring amino acid residue in which the alpha-carbon is not substituted, or in which one of the substitutions at the alpha-carbon is selected from the group consisting of aminoalkyl, carboxyalkyl heteroarylalkyl and heterocycylalkyl; Xaa5 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is an alkyl or hydroxyalkyl, and wherein the other substitution at the alpha-carbon is hydrogen or alkyl; Xaa6 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is selected from the group consisting of alkyl, aryl, heteroaryl, heterocycle, cycloalkylalkyl, heterocyclealkyl, arylalkyl and heteroarylalkyl group, and wherein the other substitution at the alpha-carbon is hydrogen or alkyl; Xaa7 is is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is a hydroxylalkyl group; Xaa8 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is selected from the group consisting of alkyl, hydroxylalkyl, heteroarylalkyl and carboxamidoalkyl, and wherein the other substitution at the alpha-carbon is hydrogen or alkyl; Xaa9 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at alpha-carbon is selected from the group consisting of carboxylalkyl, bis-carboxylalkyl, carboxylaryl, sulfonylalkyl, carboxylamidoalkyl and heteroarylalkyl; and wherein A is hydrogen, an amino acid or peptide containing from about 1 to about 5 amino acid residues, an R group, an R—C(O) (amide) group, a carbamate group RO—C(O), a urea R4R5N—C(O), a sulfonamido R—SO2 or a R4R5N—SO2.
- 32. The isolated polypeptide of claim 31 wherein,
Xaa1 is an amino acid residue selected from the group consisting of L-His, D-His, L-N-Methyl-His, D-N-Methyl-His, L-4-ThiazolylAla and D-4-ThiazolylAla; Xaa2 is an amino acid residue selected from the group consisting of L-Ala, D-Ala, L-Pro, Gly, D-Ser, D-Asn, L-N-Methyl-Ala, D-N-Methyl-Ala, L-4-ThioPro, L-Pro(t-4-OH), L-2-Pip, L-2-Azt, Aib, S- or R-Iva and Acc3; Xaa3 is an amino acid residue selected from the group consisting of L-Glu, L-N-Methyl-Glu, L-Asp, D-Asp, L-His, L-Gla, L-Adp, L-Cys and L-4-ThiazolylAla; Xaa4 is an amino acid residue selected from the group consisting of Gly, L-His, L-Lys and L-Asp; Xaa5 is an amino acid residue selected from the group consisting of L-Thr, D-Thr, L-Nle, L-Met, L-Nva and L-Aoc; Xaa6 is an amino acid residue selected from the group consisting of L-Phe, L-Tyr, L-Tyr(Bzl), Tyr(3-NO2), L-Nle, L-Trp, L-Phe(penta-Fluoro), D-Phe(penta-Fluoro), Phe(2-Fluoro), Phe(3-Fluoro), Phe(4-Fluoro), Phe(2,3-di-Fluoro), Phe(3,4-di-Fluoro), Phe(3,5-di-Fluoro), L-Phe(2,6-di-Fluoro), Phe(3,4,5-tri-Fluoro), Phe(2-Iodo), Phe(2-OH), Phe(2-OMethyl), Phe(3-OMethyl), Phe(3-Cyano), Phe(2-Chloro), Phe(2-NH2), Phe(3-NH2), Phe(4-NH2), Phe(4-NO2), Phe(4-Methyl), Phe(4-Allyl), Phe(n-butyl), Phe(4-Cyclohexyl), Phe(4-Cyclohexyloxy), Phe(4-Phenyloxy), 2-NaphthylAla, 2-PyridylAla, L-4-ThiazolylAla, L-2-Thi, L-α-Me-Phe, D-α-Me-Phe, L-α-Et-Phe, D-α-Et-Phe, L-α-Me-Phe(2-Fluoro), D-α-Me-Phe(2-Fluoro), L-α-Me-Phe(2,3-di-Fluoro), D-α-Me-Phe(2,3-di-Fluoro), L-α-Me-Phe(2,6-di-Fluoro), D-α-Me-Phe(2,6-di-Fluoro), L-α-Me-Phe(penta-Fluoro) and D-α-Me-Phe(penta-Fluoro); Xaa7 is an amino acid residue selected from the group consisting of L-Thr, D-Thr, L-Ser and L-hSer; Xaa8 is an amino acid residue selected from the group consisting of L-Ser, L-hSer, L-His, L-Asn and L-α-Me-Ser; and Xaa9 is an amino acid residue selected from the group consisting of L-Asp, L-Glu, L-Gla, L-Adp, L-Asn and L-His.
- 33. The isolated polypeptide of claim 24 wherein
Y is selected from the group consisting of L-Bip, D-Bip, L-Bip(2-Me), D-Bip(2-Me), L-Bip(2′-Me), L-Bip(2-Et), D-Bip(2-Et), L-Bip(3-Et), L-Bip(4-Et), L-Bip(2-n-Propyl), L-Bip(2-n-Propyl, 4-OMe), L-Bip(2-n-Propyl,2′-Me), L-Bip(3-Me), L-Bip(4-Me), L-Bip(2,3-di-Me), L-Bip(2,4-di-Me), L-Bip(2,6-di-Me), L-Bip(2,4-di-Et), L-Bip(2-Me, 2′-Me), L-Bip(2-Et, 2′-Me), L-Bip(2-Et, 2′-Et), L-Bip(2-Me,4-OMe), L-Bip(2-Et,4-OMe), D-Bip(2-Et,4-OMe), L-Bip(3-OMe), L-Bip(4-OMe), L-Bip(2,4,6-tri-Me), L-Bip(2,3-di-OMe), L-Bip(2,4-di-OMe), L-Bip(2,5-di-OMe), L-Bip(3,4-di-OMe), L-Bip(2-Et,4,5-di-OMe), L-Bip(3,4-Methylene-di-oxy), L-Bip(2-Et, 4,5-Methylene-di-oxy), L-Bip(2-CH2OH, 4-OMe), L-Bip(2-Ac), L-Bip(3-NH—Ac), L-Bip(4-NH—Ac), L-Bip(2,3-di-Chloro), L-Bip(2,4-di-Chloro), L-Bip(2,5-di-Chloro), L-Bip(3,4-di-Chloro), L-Bip(4-Fluoro), L-Bip(3,4-di-Fluoro), L-Bip(2,5-di-Fluoro), L-Bip(3-n-Propyl), L-Bip(4-n-Propyl), L-Bip(2-iso-Propyl), L-Bip(3-iso-Propyl), L-Bip(4-iso-Propyl), L-Bip(4-tert-Butyl), L-Bip(3-Phenyl), L-Bip(2-Chloro), L-Bip(3-Chloro), L-Bip(2-Fluoro), L-Bip(3-Fluoro), L-Bip(2-CF3), L-Bip(3-CF3), L-Bip(4-CF3), L-Bip(3-NO2), L-Bip(3-OCF3), L-Bip(4-OCF3), L-Bip(2-OEt), L-Bip(3-OEt), L-Bip(4-OEt), L-Bip(4-SMe), L-Bip(2-OH), L-Bip(3-OH), L-Bip(4-OH), L-Bip(2-CH2—COOH), L-Bip(3-CH2—COOH), L-Bip(4-CH2—COOH), L-Bip(2-CH2—NH2), L-Bip(3-CH2—NH2), L-Bip(4-CH2—NH2), L-Bip(2-CH2—OH), L-Bip(3-CH2—OH), L-Bip(4-CH2—OH), L-Phe[4-(1-propargyl)], L-Phe[4-(1-propenyl)], L-Phe[4-n-Butyl], L-Phe[4-Cyclohexyl], Phe(4-Phenyloxy), L-Phe(penta-Fluoro), L-2-(9, 10-Dihydrophenanthrenyl)-Ala, 4-(2-Benzo(b)furan)-Phe, 4-(4-Dibenzofuran)-Phe, 4-(4-Phenoxathiin)-Phe, 4-(2-Benzo(b)thiophene)-Phe, , 4-(3-thiophene)-Phe, 4-(3-Quinoline)-Phe, 4-(2-Naphthyl)-Phe, 4-(1-Naphthyl)-Phe, 4-(4-(3,5-dimethylisoxazole))-Phe, 4-(2,4-dimethoxypyrimidine)-Phe, homoPhe, Tyr(Bzl), Phe(3,4-di-Chloro), Phe(4-Iodo), 2-Naphthyl-Ala, L-α-Me-Bip and D-α-Me-Bip; and A is selected from the group consisting of H, Acetyl, β-Ala, Ahx, Gly, Asp, Glu, Phe, Lys, Nva, Asn, Arg, Ser, Thr, Val, Trp, Tyr, Caprolactam, L-Bip, L-Ser(Bzl), 3-PyridylAla, Phe(4-Me), Phe(penta-Fluoro), 4-Methylbenzyl, 4-Fluorobenzyl, n-propyl, n-hexyl, cyclohexylmethyl, 6-hydroxypentyl, 2-Thienylmethyl, 3-Thienylmethyl, penta-Fluorobenzyl, 2-naphthylmethyl, 4-biphenylmethyl, 9-Anthracenylmethyl, benzyl, (S)-(2-amino-3-phenyl)propyl, methyl, 2-aminoethyl and (S)-2-Aminopropyl.
- 34. The present invention also provides an isolated polypeptide of claim 24 wherein such polypeptide is a 10-mer to 15-mer and such polypeptide and binds to and activates the GLP-1 receptor.
- 35. An isolated polypeptide having a sequence of Formula I
- 36. The isolated polypeptide of claim 35 wherein the substitutions upon the alpha-carbon atoms of Y are selected from the group consisting of heteroarylarylmethyl, arylheteroarylmethyl or biphenylmethyl forming biphenylalanine residues, any of which is also optionally substituted with one or more, hydrogen, alkyl, cycloalkyl, arylalkyl, aryl, heterocycle, heteroaryl, alkenyl, alkynyl, halo, hydroxy, mercapto, nitro, cyano, amino, acylamino, azido, guanidino, amidino, carboxyl, carboxamido, carboxamido alkyl, formyl, acyl, carboxyl alkyl, alkoxy, aryloxy, arylalkyloxy, heteroaryloxy, heterocycleoxy, acyloxy, mercapto, mercapto alkyl, mercaptoaryl, mercapto acyl, halo, cyano, nitro, azido, amino, guanidino alkyl, guanidino acyl, sulfonic, sulfonamido, alkyl sulfonyl, aryl sulfonyl and phosphonic group.
- 37. The isolated polypeptide of claim 35 wherein Xaa2 and Xaa3 are N—H or N-alkylated amino acids residues.
- 38. The isolated polypeptide of claim 37 wherein Xaa2 and Xaa3 are N—H or N-methylated amino acid residues.
- 39. The isolated polypeptide of claim 35 wherein the other substitution at the alpha-carbon of Y is substitued with methyl or ethyl.
- 40. The isolated polypeptide of claim 35 wherein R, R4 and R5 are heteroarylalkyl or heterocycloalkyl, or R, R4 and R5 are cycloalkyl, cycloalkylalkyl, heterocycle, aryl, arylalkyl or aryloxyalkyl substituted with heteroaryl or heterocycle.
- 41. The isolated polypeptide of claim 35 wherein
Xaa2 is naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is an alkyl or cycloalkyl where the alkyl group may optionally form a ring with the nitrogen of Xaa2, and wherein the other substitution at the alpha-carbon is hydrogen or alkyl; Xaa3 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is selected from the group consisting of a carboxyalkyl, bis-carboxyalkyl, sulfonylalkyl, heteroalkyl and mercaptoalkyl, and wherein the other substituion at the alpha-carbon is hydrogen or alkyl; Xaa4 is a naturally or nonnaturally occurring amino acid residue in which the alpha-carbon is not substituted, or in which one of the substitutions at the alpha-carbon is selected from the group consisting of aminoalkyl, carboxyalkyl heteroarylalkyl and heterocycylalkyl; Xaa5 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is an alkyl or hydroxyalkyl, and wherein the other substitution at the alpha-carbon is hydrogen or alkyl; Xaa6 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is selected from the group consisting of alkyl, aryl, heteroaryl, heterocycle, cycloalkylalkyl, heterocyclealkyl, arylalkyl and heteroarylalkyl, and wherein the other substitution at the alpha-carbon is hydrogen or alkyl; Xaa7 is is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is a hydroxylalkyl group; Xaa8 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at the alpha-carbon is selected from the group consisting of alkyl, hydroxylalkyl, heteroarylalkyl and carboxamidoalkyl, and wherein the other substitution at the alpha-carbon is hydrogen or alkyl; and Xaa9 is a naturally or nonnaturally occurring amino acid residue in which one of the substitutions at alpha-carbon is selected from the group consisting of carboxylalkyl, bis-carboxylalkyl, carboxylaryl, sulfonylalkyl, carboxylamidoalkyl and heteroarylalkyl.
- 42. The isolated polypeptide of claim 41 wherein
Xaa2 is an amino acid residue selected from the group consisting of L-Ala, D-Ala, L-Pro, Gly, D-Ser, D-Asn, L-N-Methyl-Ala, D-N-Methyl-Ala, L-4-ThioPro, L-Pro(t-4-OH), L-2-Pip, L-2-Azt, Aib, S- or R-Iva and Acc3; Xaa3 is an amino acid residue selected from the group consisting of L-Glu, L-N-Methyl-Glu, L-Asp, D-Asp, L-His, L-Gla, L-Adp, L-Cys and L-4-ThiazolylAla; Xaa4 is an amino acid residue selected from the group consisting of Gly, L-His, L-Lys and L-Asp; Xaa5 is an amino acid residue selected from the group consisting of L-Thr, D-Thr, L-Nle, L-Met, L-Nva and L-Aoc; Xaa6 is an amino acid residue selected from the group consisting of L-Phe, L-Tyr, L-Tyr(Bzl), Tyr(3-NO2), L-Nle, L-Trp, L-Phe(penta-Fluoro), D-Phe(penta-Fluoro), Phe(2-Fluoro), Phe(3-Fluoro), Phe(4-Fluoro), Phe(2,3-di-Fluoro), Phe(3,4-di-Fluoro), Phe(3,5-di-Fluoro), L-Phe(2,6-di-Fluoro), Phe(3,4,5-tri-Fluoro), Phe(2-Iodo), Phe(2-OH), Phe(2-OMethyl), Phe(3-OMethyl), Phe(3-Cyano), Phe(2-Chloro), Phe(2-NH2), Phe(3-NH2), Phe(4-NH2), Phe(4-NO2), Phe(4-Methyl), Phe(4-Allyl), Phe(n-butyl), Phe(4-Cyclohexyl), Phe(4-Cyclohexyloxy), Phe(4-Phenyloxy), 2-NaphthylAla, 2-PyridylAla, L-4-ThiazolylAla, L-2-Thi, L-α-Me-Phe, D-α-Me-Phe, L-α-Et-Phe, D-α-Et-Phe, L-α-Me-Phe(2-Fluoro), D-α-Me-Phe(2-Fluoro), L-α-Me-Phe(2,3-di-Fluoro), D-α-Me-Phe(2,3-di-Fluoro), L-α-Me-Phe(2,6-di-Fluoro), D-α-Me-Phe(2,6-di-Fiuoro), L-α-Me-Phe(penta-Fluoro) and D-α-Me-Phe(penta-Fluoro); Xaa7 is an amino acid residue selected from the group consisting of L-Thr, D-Thr, L-Ser and L-hSer; Xaa8 is an amino acid residue selected from the group consisting of L-Ser, L-hSer, L-His, L-Asn and L-α-Me-Ser; and Xaa9 is an amino acid residue selected from the group consisting of L-Asp, L-Glu, L-Gla, L-Adp, L-Asn and L-His.
- 43. The isolated polypeptide of claim 35 wherein
Y is selected from the group consistng of L-Bip, D-Bip, L-Bip(2-Me), D-Bip(2-Me), L-Bip(2′-Me), L-Bip(2-Et), D-Bip(2-Et), L-Bip(3-Et), L-Bip(4-Et), L-Bip(2-n-Propyl), L-Bip(2-n-Propyl, 4-OMe), L-Bip(2-n-Propyl,2′-Me), L-Bip(3-Me), L-Bip(4-Me), L-Bip(2,3-di-Me), L-Bip(2,4-di-Me), L-Bip(2,6-di-Me), L-Bip(2,4-di-Et), L-Bip(2-Me, 2′-Me), L-Bip(2-Et, 2′-Me), L-Bip(2-Et, 2′-Et), L-Bip(2-Me,4-OMe), L-Bip(2-Et,4-OMe), D-Bip(2-Et,4-OMe), L-Bip(3-OMe), L-Bip(4-OMe), L-Bip(2,4,6-tri-Me), L-Bip(2,3-di-OMe), L-Bip(2,4-di-OMe), L-Bip(2,5-di-OMe), L-Bip(3,4-di-OMe), L-Bip(2-Et,4,5-di-OMe), L-Bip(3,4-Methylene-di-oxy), L-Bip(2-Et, 4,5-Methylene-di-oxy), L-Bip(2-CH2OH, 4-OMe), L-Bip(2-Ac), L-Bip(3-NH—Ac), L-Bip(4-NH—Ac), L-Bip(2,3-di-Chloro), L-Bip(2,4-di-Chloro), L-Bip(2,5-di-Chloro), L-Bip(3,4-di-Chloro), L-Bip(4-Fluoro), L-Bip(3,4-di-Fluoro), L-Bip(2,5-di-Fluoro), L-Bip(3-n-Propyl), L-Bip(4-n-Propyl), L-Bip(2-iso-Propyl), L-Bip(3-iso-Propyl), L-Bip(4-iso-Propyl), L-Bip(4-tert-Butyl), L-Bip(3-Phenyl), L-Bip(2-Chloro), L-Bip(3-Chloro), L-Bip(2-Fluoro), L-Bip(3-Fluoro), L-Bip(2-CF3), L-Bip(3-CF3), L-Bip(4-CF3), L-Bip(3-NO2), L-Bip(3-OCF3), L-Bip(4-OCF3), L-Bip(2-OEt), L-Bip(3-OEt), L-Bip(4-OEt), L-Bip(4-SMe), L-Bip(2-OH), L-Bip(3-OH), L-Bip(4-OH), L-Bip(2-CH2—COOH), L-Bip(3-CH2—COOH), L-Bip(4-CH2—COOH), L-Bip(2-CH2—NH2), L-Bip(3-CH2—NH2), L-Bip(4-CH2—NH2), L-Bip(2-CH2—OH), L-Bip(3-CH2—OH), L-Bip(4-CH2—OH), L-Phe[4-(1-propargyl)], L-Phe[4-(1-propenyl)], L-Phe[4-n-Butyl], L-Phe[4-Cyclohexyl], Phe(4-Phenyloxy), L-Phe(penta-Fluoro), L-2-(9,10-Dihydrophenanthrenyl) -Ala, 4-(2-Benzo(b)furan)-Phe, 4-(4-Dibenzofuran)-Phe, 4-(4-Phenoxathiin)-Phe, 4-(2-Benzo(b)thiophene)-Phe, , 4-(3-thiophene)-Phe, 4-(3-Quinoline)-Phe, 4-(2-Naphthyl)-Phe, 4-(1-Naphthyl)-Phe, 4-(4-(3,5-dimethylisoxazole))-Phe, 4-(2,4-dimethoxypyrimidine)-Phe, homoPhe, Tyr(Bzl), Phe(3,4-di-Chloro), Phe(4-Iodo), 2-Naphthyl-Ala, L-α-Me-Bip and D-α-Me-Bip.
- 44. The isolated polypeptide of claim 35 wherein such polypeptide is a 10-mer to 15-mer and such polypeptide and binds to and activates the GLP-1 receptor.
- 45. A method of making a polypeptide recognized by the family of B G-protein coupled receptors wherein the polypeptide mimics the activity of a polypeptide receptor agonist, said polypeptide having the formula
- 46. The method of claim 45 wherein the polypeptide mimics the activity of an endogenous polypeptide receptor agonist.
- 47. The method of claim 45 wherein the polypeptide receptor agonist is GLP-1.
- 48. The method of claim 45 further comprising replacing the message sequence of the polypeptide receptor agonist with a variant message sequence capable of inducing receptor mediated signal transduction.
- 49. An isolated polypeptide according to claims 1, 5, 9 or 13, wherein the isolated polypeptide is selected from the following:
- 50. An isolated polypeptide according to claims 1, 5, 9 or 13, wherein the isolated polypeptide is selected from the following:
- 51. An isolated polypeptide according to claims 1, 5, 9 or 13, wherein the isolated polypeptide is selected from the following:
- 52. A pharmaceutical composition comprising a compound as defined in claims 1, 12, 24 or 35 and a pharmaceutically acceptable carrier therefor.
- 53. A pharmaceutical combination comprising a compound as defined in claims 1, 12, 24 or 35 and at least one therapeutic agent selected from the group consisting of an antidiabetic agent, an anti-obesity agent, a anti-hypertensive agent, an anti-atherosclerotic agent and a lipid-lowering agent.
- 54. The combination as defined in claim 53 wherein the antidiabetic agent is at least one agent selected from the group consisting of a biguanide, a sulfonyl urea, a glucosidase inhibitor, a PPAR γ agonist, a PPAR α/γ dual agonist, an aP2 inhibitor, a DP4 inhibitor, an insulin sensitizer, a glucagon-like peptide-1 (GLP-1), insulin and a meglitinide.
- 55. The combination as defined in claim 54 wherein the antidiabetic agent is at least one agent selected from the group consisting of metformin, glyburide, glimepiride, glipyride, glipizide, chlorpropamide, gliclazide, acarbose, miglitol, pioglitazone, troglitazone, rosiglitazone, insulin, Gl-262570, isaglitazone, JTT-501, NN-2344, L895645, YM-440, R-119702, AJ9677, repaglinide, nateglinide, KAD1129, AR-HO39242, GW-409544, KRP297, AC2993, LY315902, and NVP-DPP-728A.
- 56. The combination as defined in claim 54 wherein the anti-obesity agent is at least one agent selected from the group consisting of a beta 3 adrenergic agonist, a lipase inhibitor, a serotonin (and dopamine) reuptake inhibitor, a thyroid receptor beta compound, and an anorectic agent.
- 57. The combination as defined in claim 56 wherein the anti-obesity agent is at least one agent selected from the group consisting of orlistat, ATL-962, AJ9677, L750355, CP331648, sibutramine, topiramate, axokine, dexamphetamine, phentermine, phenylpropanolamine and mazindol.
- 58. The combination as defined in claim 54 wherein the lipid lowering agent is at least one agent selected from the group consisting of an MTP inhibitor, cholesterol ester transfer protein, an HMG CoA reductase inhibitor, a squalene synthetase inhibitor, a fibric acid derivative, an upregulator of LDL receptor activity, a lipoxygenase inhibitor, or an ACAT inhibitor.
- 59. The combination as defined in claim 58 wherein the lipid lowering agent is at least one agent selected from the group consisting of pravastatin, lovastatin, simvastatin, atorvastatin, cerivastatin, fluvastatin, nisvastatin, visastatin, fenofibrate, gemfibrozil, clofibrate, avasimibe, TS-962, MD-700, CP-529414, and/or LY295427.
- 60. A method for treating or delaying the progression or onset of diabetes, diabetic retinopathy, diabetic neuropathy, diabetic nephropathy, wound healing, insulin resistance, hyperglycemia, hyperinsulinemia, Syndrome X, diabetic complications, elevated blood levels of free fatty acids or glycerol, hyperlipidemia, obesity, hypertriglyceridemia, atherosclerosis or hypertension, which comprises administering to a mammalian species in need of treatment a therapeutically effective amount of a compound as defined in claims 1, 12, 24 or 35.
- 61. A method according to claim 60 further comprising administering, concurrently or sequentially, a therapeutically effective amount of at least one additional therapeutic agent selected from the group consisting of an antidiabetic agent, an anti-obesity agent, a anti-hypertensive agent, an anti-atherosclerotic agent and a lipid-lowering agent.
Parent Case Info
[0001] This application claims the benefit of provisional application U.S. Serial No. 60/342,015, filed Oct. 18, 2001, the disclosure of which is hereby incorporated by reference herein in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60342015 |
Oct 2001 |
US |