Claims
- 1. A compound of Formula I:
- 2. The compound of claim 1, wherein the compound assumes a substantially helical conformation in solution.
- 3. The compound of claim 1, wherein the dipeptide is Ala-Thr.
- 4. The compound of claim 1, wherein the dipeptide is Val-Ile.
- 5. The compound of claim 1, wherein the dipeptide is Ala-R4, and wherein R4 is a hydrophobic amino acid.
- 6. The compound of claim 1, wherein the dipeptide is Ala-R4, and wherein R4 is selected from the group consisting of glycine, alanine, valine, isoleucine, phenylalanine, 4-benzoylphenylalanine, and tryptophan.
- 7. The compound of claim 1, wherein the dipeptide is Ala-R4, and wherein R4 is a hydrophilic amino acid.
- 8. The compound of claim 1, wherein the dipeptide is Ala-R4, and wherein R4 is selected from the group consisting of serine and threonine.
- 9. The compound of claim 1, wherein the dipeptide is Ala-R4, and wherein R4 is a derivatized threonine.
- 10. The compound of claim 9, wherein the derivatized threonine is O-benzyl threonine.
- 11. The compound of claim 1, wherein the dipeptide is Val-R5, and wherein R5 is a bulky hydrophobic amino acid.
- 12. The compound of claim 11, wherein R5 is selected from the group consisting of isoleucine, leucine, and phenylalanine.
- 13. The compound of claim 1, wherein the dipeptide is R6-Ile, and wherein R6 is a bulky hydrophobic amino acid.
- 14. The compound of claim 13, wherein R6 is selected from the group consisting of isoleucine, leucine, and phenylalanine.
- 15. The compound of claim 1, wherein at least one R2 is an L-amino acid.
- 16. The compound of claim 1, wherein at least one R2 is a D-amino acid.
- 17. The compound of claim 1 wherein R2 is a hydrophobic amino acid.
- 18. The compound of claim 1, wherein R2 is selected from the group consisting of glycine, alanine, valine, isoleucine, leucine, phenylalanine, 4-benzoylphenylalanine, and tryptophan.
- 19. The compound of claim 1, wherein R2 is a hydrophilic amino acid.
- 20. The compound of claim 1, wherein R2 is selected from the group consisting of serine and threonine.
- 21. The compound of claim 1, wherein R2 is an alpha, alpha-disubstituted amino acid.
- 22. The compound of claim 1, wherein R2 is aminoisobutyric acid (Aib).
- 23. The compound of claim 1, wherein R2 is an alpha, alpha-disubstituted amino acid containing a first functional group and a second functional group independently selected from the group consisting of a lower alkyl group and an aryl group.
- 24. The compound of claim 23, wherein the first functional group and the second functional group are independently selected from the group consisting of methyl, ethyl, phenyl, and benzyl.
- 25. The compound of claim 1, wherein the compound is selected from the group consisting of:
- 26. The compound of claim 25, wherein at least one of the amino acids in SEQ ID NOS: 1-10, inclusive, is a D-amino acid.
- 27. The compound of claim 25, wherein at least one of the amino acids SEQ ID NOS: 1-10, inclusive, is an L-amino acid.
- 28. The compound of claim 25, wherein each and every chiral amino acid in SEQ ID NOS: 1-10, inclusive, is a D-amino acid.
- 29. The compound of claim 25, wherein each and every chiral amino acid in SEQ ID NOS: 1-10, inclusive, is an L-amino acid.
- 30. The compound of claim 1, wherein the compound is
- 31. The compound of claim 1, wherein the compound is a pharmaceutically acceptable salt of the compound of Formula I.
- 32. A composition comprising the compound of claim 1 and a pharmaceutically acceptable carrier.
- 33. The composition of claim 31, further comprising a carrier to promote delivery of a compound of Formula I to a brain.
- 34. A compound of Formula I, for use in the preparation of a medicament for the treatment of a subject having or at risk of having a β-amyloid-associated disease, wherein Formula I has the structure:
- 35. The use of claim 34, wherein (R2)n comprises at least one dipeptide that mimics a secretase cleavage site in an amyloid precursor protein (APP).
- 36. A method of treating a subject having or at risk of having a β-amyloid-associated disease, comprising:
administering to a subject having or at risk of having a β-amyloid-associated disease a therapeutically effective amount of a compound of Formula I according to claim 1 to treat the β-amyloid-associated disease.
- 37. The method of claim 36, wherein the β-amyloid-associated disease is a neurodegenerative disease.
- 38. The method of claim 36, wherein the β-amyloid-associated disease is Alzheimer's disease.
- 39. The method of claim 36, wherein the compound is administered to the subject in combination with an effective amount of a second agent useful in the treatment of β-amyloid-associated disease.
- 40. The method of claim 39, wherein the second agent is an acetylcholinesterase inhibitor.
- 41. The method of claim 36, wherein the compound is orally administered.
- 42. A method of inhibiting an activity of an intramembrane protease, comprising:
contacting an intramembrane protease under conditions in which the intramembrane protease is enzymatically active with an effective amount of a compound of Formula I according to claim 1, to inhibit the activity of the intramembrane protease.
- 43. The method of claim 42, wherein the intramembrane protease is a γ-secretase.
- 44. The method of claim 42, wherein the contacting results in a decrease in generation of amyloid-β peptide.
- 45. The method of claim 42, wherein the contacting occurs in vitro.
- 46. The method of claim 42, wherein the contacting occurs in vivo.
RELATED APPLICATION
[0001] This application claims benefit under 35 U.S.C. 119(e) of U.S. Pat. No. 60/357,023, filed Feb. 14, 2002, the entire content of which is incorporated herein by reference.
GOVERNMENT RIGHTS
[0002] This invention was funded in part under National Institute of Health Grant No. AG17574. The government may retain certain rights in the invention.
Provisional Applications (1)
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Number |
Date |
Country |
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60357023 |
Feb 2002 |
US |