Claims
- 1. A method of attaching a spacer group to a molecule selected from a peptoid, a peptide, an oligonucleotide, and an oligosaccharide, the method comprising:
synthesizing said spacer group, via initial reaction with an amine, hydroxyl or thiol group of said molecule, by repeating alternating addition of (i) a submonomer consisting of acrylic acid, an alkanoic acid bearing a terminal leaving group, or an activated derivative thereof, and (ii) a submonomer consisting of an alkanethiol having a terminal primary amine, hydroxyl or thiol group.
- 2. The method of claim 1, wherein said molecule bears an amine group, and said initial reaction is with said amine group of said molecule, thereby forming an amide linkage.
- 3. The method of claim 1, wherein said molecule is attached to a solid phase support.
- 4. The method of claim 3, wherein said molecule is synthesized on said solid phase support.
- 5. The method of claim 4, wherein said molecule is a peptoid, and said peptoid is synthesized on an amine- or hydroxyl-derivatized solid support, by repeating alternating addition of (i) an acyl submonomer bearing an α-leaving group and (ii) a primary amine submonomer.
- 6. The method of claim 1, wherein submonomer (i) is acrylic acid or an activated derivative thereof.
- 7. The method of claim 1, wherein submonomer (ii) is an alkanethiol having a terminal primary amine.
- 8. The method of claim 1, wherein submonomer (ii) is selected from 2-aminoethanethiol, 2-hydroxyethanethiol, and 1,2-ethanedithiol.
- 9. The method of claim 8, wherein submonomer (ii) is 2-aminoethanethiol.
- 10. The method of claim 1, further comprising attaching a ligation moiety to a free terminus of said spacer group.
- 11. The method of claim 4, wherein said amine of said amine-derivatized support is attached to a ligation moiety, and said amine is cleavable from said support.
- 12. The method of claim 1, wherein the ligation moiety comprises a functional group selected from the group consisting of: thiol, carboxylic acid, thioester, thiocarboxylic acid, aldehyde, hydrazine, hydrazide, 3-mercapto-1,2-propanediyl, aminooxyacetamide, N-(2-thioethyl)aminoacetamide, N-(2-hydroxyethyl)aminoacetamide, 2-bromo amino acid, biotin, and protected derivatives thereof.
- 13. The method of claim 1, further comprising converting sulfide linkages in said spacer group to sulfoxide linkages.
- 14. A method of attaching a spacer group to a molecule selected from a peptoid, a peptide, an oligonucleotide, and an oligosaccharide, having a acrylamide group at a terminus, the method comprising:
synthesizing said spacer group, via initial reaction with said acrylamide, by repeating the steps of (i) reacting the thiol functionality of a hydroxyalkanethiol with said terminus of the molecule; and (ii) converting the hydroxyl functionality of the reacted hydroxyalkanethiol to a leaving group.
- 15. The method of claim 14, further comprising converting sulfide linkages in said spacer group to sulfoxide linkages.
- 16. A method of preparing a spacer-molecule conjugate on a solid support, said molecule selected from a peptoid, a peptide, an oligonucleotide, and an oligosaccharide, the method comprising:
(a) synthesizing a spacer group on an amine- or hydroxyl-derivatized solid support, by repeating alternating addition of (i) a submonomer consisting of acrylic acid, an alkanoic acid bearing a terminal leaving group, or an activated derivative thereof, and (ii) a submonomer consisting of an alkanethiol having a terminal primary amine, hydroxyl or thiol group; and (b) attaching said molecule to said spacer.
- 17. The method of claim 16, wherein step (b) comprises synthesizing a peptoid, attached to an amino, hydroxyl or thiol group of said spacer, by repeating alternating addition of (i) an acyl submonomer bearing an c-leaving group and (ii) a primary amine submonomer.
- 18. The method of claim 17, wherein said peptoid is attached to an amino group of said spacer.
- 19. The method of claim 16, wherein said solid support is amine-derivatized.
- 20. The method of claim 19, wherein said amine of said amine-derivatized support is attached to a ligation moiety, and said amine is cleavable from said support.
- 21. The method of claim 16, further comprising attaching a ligation moiety to said molecule.
- 22. The method of claim 16, further comprising converting sulfide linkages in said spacer group to sulfoxide linkages.
- 23. The method of claim 16, wherein said solid support is a planar array comprising a plurality of spacer groups, and said peptoid synthesizing comprises synthesizing a plurality of different-sequence peptoids attached to said spacer groups.
- 24. The method of claim 23, wherein said plurality comprises a combinatorial library of peptoids.
- 25. The method of claim 16, wherein said solid support is a plurality of beads, and said peptoid synthesizing comprises synthesizing a plurality of different-sequence peptoids attached to said beads, wherein each bead contains same-sequence peptoids.
- 26. The method of claim 25, wherein said plurality comprises a combinatorial library of peptoids.
- 27. A method of preparing a spacer-molecule conjugate on a solid support, said molecule selected from a peptoid, a peptide, an oligonucleotide, and an oligosaccharide, the method comprising:
(a) synthesizing a spacer group on an acrylamide-derivatized solid support, by (i) reacting the thiol functionality of a hydroxyalkanethiol with said acrylamide; and repeating the steps of: (ii) converting the hydroxyl functionality of the reacted hydroxyalkanethiol to a leaving group, and (iii) reacting the thiol functionality of a hydroxyalkanethiol with said leaving group; and (b) attaching said molecule to said spacer.
- 28. The method of claim 27, further comprising converting sulfide linkages in said spacer group to sulfoxide linkages.
- 29. method of preparing a solid support derivatized with hydrophilic spacer groups, comprising:
synthesizing spacer groups on an amine- or hydroxyl-derivatized solid support, by repeating alternating addition of (i) a submonomer consisting of acrylic acid, an alkanoic acid bearing a terminal leaving group, or an activated derivative thereof, and (ii) a submonomer consisting of an alkanethiol having a terminal primary amine, hydroxyl or thiol group; and converting sulfide linkages in said spacer groups to sulfoxide linkages.
- 30. The method of claim 29, wherein submonomer (i) is acrylic acid or an activated derivative thereof.
- 31. The method of claim 29, wherein submonomer (ii) is an alkanethiol having a terminal primary amine.
- 32. The method of claim 29, wherein submonomer (ii) is selected from 2-aminoethanethiol, 2-hydroxyethanethiol, and 1,2-ethanedithiol.
- 33. The method of claim 32, wherein submonomer (ii) is 2-aminoethanethiol.
- 34. A method of preparing a solid support derivatized with hydrophilic spacer groups, comprising:
(a) synthesizing a spacer group on an acrylamide-derivatized solid support, by (i) reacting the thiol functionality of a hydroxyalkanethiol with said acrylamide; and repeating the steps of: (ii) converting the hydroxyl functionality of the reacted hydroxyalkanethiol to a leaving group, and (iii) reacting the thiol functionality of a hydroxyalkanethiol with said leaving group; and (b) converting sulfide linkages in said spacer groups to sulfoxide linkages.
- 35. The method of claim 34, further comprising converting sulfide linkages in said spacer group to sulfoxide linkages.
- 36. The method of claim 34, further comprising attaching ligation moieties to the free termini of said spacer groups.
- 37. The method of claim 34, wherein said solid support is amine-derivatized.
- 38. The method of claim 37, wherein said amine of said amine-derivatized support is attached to a ligation moiety, and said amine is cleavable from said support.
- 39. The method of claim 36, wherein said ligation moiety comprises a functional group selected from the group consisting of: thiol, disulfide, hydroxyl, amino, carboxylic acid, thioester, thiocarboxylic acid, aldehyde, hydrazine, hydrazide, 3-mercapto-1,2-propanediyl, aminooxyacetyl, N-(2-thioethyl)amino, N-(2-hydroxyethyl)amino, 2-bromo amino acid, biotin, and protected derivatives thereof.
- 40. A hydrophilic spacer group-molecule conjugate having the structure:
- 41. The conjugate of claim 40, wherein said molecule is a peptoid.
- 42. The conjugate of claim 40, wherein A is S.
- 43. The conjugate of claim 42, wherein n=m=2.
- 44. The conjugate of claim 43, wherein p is 2 to 25.
- 45. The conjugate of claim 44, wherein Y is NH.
- 46. The conjugate of claim 40, wherein the ligation moiety comprises a functional group selected from the group consisting of: thiol, disulfide, hydroxyl, amino, carboxylic acid, thioester, thiocarboxylic acid, aldehyde, hydrazine, hydrazide, 3-mercapto-1,2-propanediyl, aminooxyacetyl, N-(2-thioethyl)amino, N-(2-hydroxyethyl)amino, 2-bromo amino acid, biotin, and protected derivatives thereof.
- 47. The conjugate of claim 41, wherein the peptoid has the general formula I:
- 48. The conjugate of claim 47, wherein, in said peptoid, each of R1 and R2 is hydrogen.
- 49. The conjugate of claim 48, wherein, in said peptoid, at least one Rb includes a group which is cationic at physiologically relevant pH, and at least one Rb is uncharged at physiologically relevant pH.
- 50. A solid phase support derivatized with at least one hydrophilic spacer group having the structure:
- 51. The support of claim 50, wherein said support is a bead.
- 52. The support of claim 50, wherein said support is a planar surface.
- 53. The support of claim 50, wherein A is S.
- 54. The support of claim 53, wherein n=m=2.
- 55. The support of claim 54, wherein p is 2 to 25.
- 56. The support of claim 55, wherein Y is NH.
- 57. The support of claim 50, wherein A is S.
- 58. The support of claim 50, wherein the ligation moiety comprises a functional group selected from the group consisting of: thiol, disulfide, hydroxyl, amino, carboxylic acid, thioester, thiocarboxylic acid, aldehyde, hydrazine, hydrazide, 3-mercapto-1,2-propanediyl, aminooxyacetyl, N-(2-thioethyl)amino, N-(2-hydroxyethyl)amino, 2-bromo amino acid, biotin, and protected derivatives thereof.
- 59. A kit useful for preparing a solid support derivatized with a plurality of molecules, comprising
a spacer-derivatized solid phase support as recited in claim 42, wherein one of group X or Z′ is a ligation moiety, and the other is said solid phase support, and a plurality of molecules selected from peptoids, peptides, oligonucleotides, and oligosaccharides, each containing a ligation moiety effective to react with said ligation moiety X or Z′ to form a stable linkage.
- 60. The kit of claim 59, wherein said molecules are peptoids.
- 61. The kit of claim 59, wherein said molecules constitute a combinatorial library.
- 62. method of synthesizing a branched peptoid, comprising:
(a) synthesizing a peptoid chain on an amine-derivatized solid support, by repeating alternating addition of (i) an acyl submonomer bearing an α-leaving group and (ii) a primary amine submonomer, wherein at least one such primary amine submonomer is a diamine, having one free primary amine and one primary or secondary amine protected with a protecting group which is not removed under the conditions of such synthesizing; (b) capping the free terminus of said peptoid chain; (c) removing said protecting group to produce a free primary or secondary amine; and (d) synthesizing a peptoid chain on the free amine of (c).
- 63. The method of claim 62, wherein said protecting group is p-nitrophenethyloxycarbonyl (NPEOC).
- 64. A method of preparing a library of disulfide-linked peptoids, the method comprising
providing a plurality of solid support bound-peptoids, wherein each said peptoid is derivatized with a thiol group, providing a second plurality of solid support bound-peptoids, wherein each said peptoid is derivatized with an activated disulfide; contacting said first and second pluralities; and cleaving said peptoids from said solid supports, under conditions effective to form disulfide-linked peptoid dimers.
- 65. The method of claim 64, wherein said second plurality is provided by reacting a library of solid-support bound peptoids, each derivatized with a thiol or protected thiol group, with o-nitrosulfenyl chloride.
- 66. A method of preparing a library of disulfide-linked peptoids, the method comprising:
providing a plurality of solid support bound-peptoids, wherein each said peptoid is derivatized with a trityl sulfide (S-trityl) group, and treating said solid support bound-peptoids with a reagent effective to cleave said trityl group and form disulfide-linked peptoid dimers.
- 67. The method of claim 66, wherein the reagent is iodine, and said peptoids remain bound to the support.
- 68. The method of claim 66, wherein the reagent is TFA/MeSiCl3, and said peptoids are cleaved from the support.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/282,115, filed Apr. 6, 2001, which is hereby incorporated herein in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60282115 |
Apr 2001 |
US |