Claims
- 1. A method for preparing a phosphitylated compound comprising the steps of:
providing a compound having a hydroxyl group; and reacting said compound with a phosphitylating reagent in the presence of a pyridinum salt in a solvent under conditions of time, temperature and pressure effective to yield said phosphitylated compound.
- 2. The method of claim 1 wherein said compound is a nucleoside.
- 3. The method of claim 2 wherein said compound is a 5′-O-protected nucleoside having a 3′ hydroxyl group.
- 4. The method of claim 1 wherein said compound is a nucleoside dimer having a 3′ or 5′ hydroxyl group.
- 5. The method of claim 1 wherein said compound is an oligonucleotide or oligonucleotide analog having a 3′ or 5′ hydroxyl group.
- 6. The method of claim 2 wherein said nucleoside has a 5′ or a 2′ hydroxyl group.
- 7. The method of claim 1 wherein said phosphitylating reagent is 2-cyanoethyl-N,N,N′,N′-tetraisopropyl-phosphorodiamidite, bis(N,N-diisopropylamino)-2-methyl-trifluoroacetylaminoethoxyphosphine or bis(N,N-diisopropyl-amino)-2-diphenylmethylsilylethoxyphosphine.
- 8. The method of claim 1 wherein said pyridinium salt is pyridinium hydrochloride, pyridinium trifluoroacetate or pyridinium dichloroacetate.
- 9. The method of claim 1 wherein said solvent is dichloromethane, acetonitrile, ethyl acetate, tetrahydrofuran or a mixture thereof.
- 10. The method of claim 1, wherein said activator is bound to a solid support.
- 11. The method of claim 10 wherein said activator is a polyvinyl pyridinium salt.
- 12. A method for the preparation of a compound of formula:
- 13. The method of claim 12 wherein said pyridinium salt has the formula
- 14. The method of claim 13 wherein the substituted imidazole is 1-methylimidazole.
- 15. The method of claim 13 wherein X− is trifluoroacetate.
- 16. The method of claim 12 wherein the phosphoramidite is reacted with the 5′-hydroxyl of a solid-support bound nucleoside or oligonucleotide.
- 17. The method of claim 12 wherein the oligonucleotide comprises phosphorothioate intersugar linkages.
- 18. A method for the preparation of an oligonucleotide comprising the steps of:
providing a 3′-nucleoside phosphoramidite or 3′-oligonucleotide phosphoramidite; and reacting said 3′-nucleoside phosphoramidite or 3′-oligonucleotide phosphoramidite with the 5′-hydroxyl of a nucleoside, or oligonucleotide in the presence of an activating reagent; said nucleoside or oligonucleotide being optionally bound to a solid support; said activating reagent comprising at least one pyridinium salt and one substituted imidazole.
- 19. The method of claim 18 wherein the pyridinium salt has the formula
- 20. The method of claim 19 wherein the substituted imidazole is 1-methylimidazole.
- 21. The method of claim 20 wherein X− is trifluoroacetate.
- 22. The method of claim 20 wherein the 3′-mononucleoside phosphoramidite or 3′-oligonucleotide phosphoramidite is reacted with the 5′-hydroxyl of a solid-support bound nucleoside, nucleotide or oligonucleotide.
- 23. The method of claim 20 wherein the oligonucleotide comprises phosphorothioate intersugar linkages.
- 24. A synthetic method comprising:
providing a phosphoramidite of formula: 51wherein: R1 is a nucleoside or an oligonucleotide; R6 is —N(R7)2 wherein R7 is alkyl having from one to about six carbons; or R7 is a heterocycloalkyl or heterocycloalkenyl ring containing from 4 to 7 atoms, and having up to 3 heteroatoms selected from nitrogen, sulfur, and oxygen; Pg is a phosphorus protecting group; and reacting said phosphoramidite with a hydroxyl group of a nucleoside linked to a solid support, or an oligonucleotide linked to a solid support, to form a compound of formula: 52wherein: R2 is a nucleoside linked to a solid support, or an oligonucleotide linked to a solid support; said reaction being performed in the presence of an activating reagent, said activating reagent comprising at least one pyridinium salt and one substituted imidazole; and oxidizing or sulfurizing said compound to form a compound of formula: 53wherein Q is O or S.
- 25. The method of claim 24 wherein the pyridinium salt has the formula
- 26. The method of claim 25 wherein the substituted imidazole is 1-methylimidazole.
- 27. The method of claim 265 wherein X− is trifluoroacetate.
- 28. The method of claim 16 wherein Q is S.
- 29. A synthetic method comprising:
providing a compound of Formula X: 55wherein: B is a nucleobase; R8 is H, a hydroxyl protecting group, or a linker connected to a solid support; W is an optionally protected internucleoside linkage; q is 0 to about 50; R4 is H, F, O—R, S—R or N—R(R10);
R is H, a protecting group, or has one of the formulas: 56where each m is independently from 1 to 10; y is from 0 to 10; E is H, a hydroxyl protecting group, C1-C10 alkyl, N(R10)(R11) or N═C(R10)(R11); substituted or unsubstituted C1-C10 alkyl, C2-C10 alkenyl, C2-C10 alkynyl, wherein the substitutions are selected from one or several halogen, cyano, carboxy, hydroxy, nitro and mercapto residues; and each R10 or R11 is, independently, H, substituted or unsubstituted C1-C10 alkyl, C2-C10 alkenyl, C2-C10 alkynyl, wherein the substitutions are selected from one or several halogen, cyano, carboxy, hydroxy, nitro and mercapto residues; alkylthioalkyl, a nitrogen protecting group, or R10 and R11, together, are a nitrogen protecting group or wherein R10 and R11 are joined in a ring structure that can include at least one heteroatom selected from N and O;
or R is —CH2—CH2—O—CH2—CH2—N(R10)(R11); reacting the compound of Formula X in the presence of an activating reagent with a compound of Formula XI: 57where r is 0 to about 50; R5 is a hydroxyl protecting group; R6 is —N(R7)2 wherein R7 is alkyl having from one to about six carbons; or R7 is a heterocycloalkyl or heterocycloalkenyl ring containing from 4 to 7 atoms, and having up to 3 heteroatoms selected from nitrogen, sulfur, and oxygen; to form a compound of Formula XII: 58wherein said activating reagent comprises at least one pyridinium salt and one substituted imidazole.
- 30. The method of claim 29 wherein the pyridinium salt has the formula:
- 31. The method of claim 30 wherein the substituted imidazole is 1-methylimidazole.
- 32. The method of claim 31 wherein X− is trifluoroacetate.
- 33. The method of claim 29 wherein R8 is a linker connected to a solid support.
- 34. The method of claim 29 wherein R4 is —O—R wherein R has the formula —[—(CH2)m—O—]y-E; m is 2, y is 1; and E is CH3, —N(R10)—(R11), or —CH2—CH2—N(R10)(R11).
- 35. The method of claim 29 wherein r is 0.
- 36. The method of claim 29 wherein R6 is diisopropylamino.
- 37. The method of claim 29 wherein Pg is —CH2CH2CN, —CH2CH═CHCH2CN, para-CH2C6H4CH2CN, —(CH2)2-5N(H)COCF3, —CH2CH2Si(C6H5)2CH3, or —CH2CH2N(CH3)COCF3.
- 38. The method of claim 29 wherein Pg is —CH2CH2CN.
- 39. The method of claim 29 further comprising oxidizing or sulfurizing the compound of Formula XII to form a compound of Formula XIII:
- 40. The method of claim 39 further comprising a capping step.
- 41. The method of claim 40 wherein the capping step is performed prior to oxidation.
- 42. The method of claim 41 further comprising the step of cleaving the oligomeric compound to produce a further compound of formula X.
- 43. A synthetic method comprising:
providing a compound of Formula X: 61wherein: B is a nucleobase; R8 is H, a hydroxyl protecting group, or a linker connected to a solid support; W is an optionally protected internucleoside linkage; q is 0 to about 50; R4 is H, F, O—R, S—R or N—R(R10)
R is H, a protecting group, or has one of the formulas: 62where each m is independently from 1 to 10; y is from 0 to 10; E is H, a hydroxyl protecting group, C1-C10 alkyl, N(R10)(R11) or N═C(R10)(R11); substituted or unsubstituted C1-C10 alkyl, C2-C10 alkenyl, C2-C10 alkynyl, wherein the substitutions are selected from one or several halogen, cyano, carboxy, hydroxy, nitro and mercapto residues; and each R10 or R11 is, independently, H, substituted or unsubstituted C1-C10 alkyl, C2-C10 alkenyl, C2-C11 alkynyl, wherein the substitutions are selected from one or several halogen, cyano, carboxy, hydroxy, nitro and mercapto residues; alkylthioalkyl, a nitrogen protecting group, or R and R10, together, are a nitrogen protecting group or wherein R and R2 are joined in a ring structure that can include at least one heteroatom selected from N and O;
or R is —CH2—CH2—O—CH2—CH2—N(R10)(R11) provided that R14 is not H or OH; reacting the compound of Formula X in the presence of an activator with a compound of Formula XI: 63where r is 0 to about 50; R5 is a hydroxyl protecting group; R6 is —N(R7)2 wherein R7 is alkyl having from one to about six carbons; or R7 is a heterocycloalkyl or heterocycloalkenyl ring containing from 4 to 7 atoms, and having up to 3 heteroatoms selected from nitrogen, sulfur, and oxygen; to form a compound of Formula XII: 64wherein the activator has the formula G+U−, where G+ is selected from the group consisting of pyridinium, imidazolium, and benzimidazolium; and U− is selected from the group consisting of hexafluorophosphate, tetrafluoroborate, triflate, hydrochloride, trifluoroacetate, dichloroacetate, −O-mesyl, −O-tosyl, −Br, and −O-trifluorosulfonyl.
- 44. The method of claim 43 wherein R8 is a linker connected to a solid support.
- 45. The method of claim 44 wherein R4 is —O—R wherein R has the formula —[—(CH2)m—O—]y-E; m is 2, y is 1; and E is CH3, —N(R10)(R11), or —CH2—CH2—N(R10)(R11).
- 46. The method of claim 43 wherein r is 0.
- 47. The method of claim 43 wherein R6 is diisopropylamino.
- 48. The method of claim 43 wherein Pg is —CH2CH2CN, —CH2CH═CHCH2CN, para-CH2C6H4CH2CN, —(CH2)2-5N(H)COCF3, —CH2CH2Si(C6H5)2CH3, or —CH2CH2N(CH3)COCF3.
- 49. The method of claim 43 wherein Pg is —CH2CH2CN.
- 50. The method of claim 43 further comprising oxidizing or sulfurizing the compound of Formula XII to form a compound of Formula XIII:
- 51. The method of claim 50 further comprising a capping step.
- 52. The method of claim 51 wherein the capping step is performed prior to oxidation.
- 53. The method of claim 52 further comprising the step of cleaving the oligomeric compound to produce a further compound of Formula X.
- 54. A synthetic method comprising:
providing a compound of Formula XX: 66wherein: R4 is H, F, O—R, S—R or N—R(R10);
R is H, a protecting group, or has one of the formulas: 67where each m is independently from 1 to 10; y is from 0 to 10; E is H, a hydroxyl protecting group, C1-C10 alkyl, N(R10)(R11) or N═C(R10)(R11); substituted or unsubstituted C1-C10 alkyl, C2-C10 alkenyl, C2-C10 alkynyl, wherein the substitutions are selected from one or several halogen, cyano, carboxy, hydroxy, nitro and mercapto residues; and each R10 or R11 is, independently, H, substituted or unsubstituted C1-C10 alkyl, C2-C10 alkenyl, C2-C10 alkynyl, wherein the substitutions are selected from one or several halogen, cyano, carboxy, hydroxy, nitro and mercapto residues; alkylthioalkyl, a nitrogen protecting group, or R11 and R11, together, are a nitrogen protecting group or wherein R10 and R11 are joined in a ring structure that can include at least one heteroatom selected from N and O;
or R is —CH2—CH2—O—CH2—CH2—N(R10)(R11); R5 is a hydroxyl protecting group; Z1 is aryl having 6 to about 14 carbon atoms or alkyl having from one to about six carbon atoms; Y1 is O or S; Y2 is O or S; Y3 is C(═O) or S; v is 2 to about 4; B is a nucleobase; R6 is —N(R7)2 wherein R7 is alkyl having from one to about six carbons; or R7 is a heterocycloalkyl or heterocycloalkenyl ring containing from 4 to 7 atoms, and having up to 3 heteroatoms selected from nitrogen, sulfur, and oxygen; reacting said compound of Formula XX with a compound of Formula XXI: 68wherein: R8 is H, a hydroxyl protecting group, or a linker connected to a solid support; in the presence of an activator to form a compound of Formula XXII: 69wherein said activator has the formula G+U−, where: G+ is selected from the group consisting of pyridinium, imidazolium, and benzimidazolium; and U− is selected from the group consisting of hexafluorophosphate, tetrafluoroborate, triflate, hydrochloride, trifluoroacetate, dichloroacetate, −O-mesyl, −O-tosyl, −Br, and −O-trifluorosulfonyl; or said activator is a substituted imidazolium triflate.
- 55. The method of claim 55 wherein said activator is imidazolium triflate.
- 56. The method of claim 55 wherein v is 2; and Y3 is C(═O).
- 57. The method of claim 56 wherein Z is methyl, phenyl or t-butyl.
- 58. The method of claim 57 wherein Z is t-butyl.
- 59. The method of claim 56 wherein n is 0.
- 60. The method of claim 56 wherein R2 is a linker to a solid support.
- 61. The method of claim 56 wherein Y1 and Y2 are each O.
- 62. The method of claim 56 wherein Y1 and Y2 are each S.
- 63. The method of claim 56 wherein Y1 is O and Y2 is S.
- 64. The method of claim 56 wherein each R6 is isopropyl.
- 65. The method of claim 56 wherein n is 0; R3 is H, R5 is diisopropylamino; Y1 is O; Y2 is S; and Z is methyl or t-butyl.
- 66. The method of claim 65 wherein Z is t-butyl.
- 67. The method of claim 55 wherein each B is devoid of exocyclic amine protection.
- 68. The method of claim 55 wherein W is an optionally protected phosphodiester, phosphorothioate, phosphorodithioate, or alkyl phosphonate internucleotide linkage.
- 69. The method of claim 55 further comprising oxidizing or sulfurizing the compounds of Formula XXII to form a compound of Formula XXIII:
- 70. The method of claim 69 further comprising a capping step.
- 71. The method of claim 70 wherein the capping step is performed prior to oxidation.
- 72. The method of claim 71 further comprising the step of cleaving the oligomeric compound to produce a further compound of Formula XXI.
- 73. The method of claim 43 wherein G+ is pyridinium and U− is hexafluorophosphate or tetrafluoroborate.
- 74. The method of claim 73 wherein U− is hexafluorophosphate.
- 75. The method of claim 43 wherein G+ is imidazolium or benzimidazolium and U− is selected from the group consisting of hexafluorophosphate, tetrafluoroborate, triflate, hydrochloride, trifluoroacetate, dichloroacetate, −O-mesyl, −O-tosyl, −Br, and −O-trifluorosulfonyl.
- 76. The method of claim 75 wherein G+ is imidazolium or benzimidazolium and U− is selected from the group consisting of hexafluorophosphate, tetrafluoroborate, and triflate.
- 77. The method of claim 75 wherein G+ is imidazolium or benzimidazolium and U− is selected from the group consisting of hydrochloride, trifluoroacetate, dichloroacetate, −O-mesyl, −O-tosyl, −Br, and −O-trifluorosulfonyl.
- 78. The method of claim 43 wherein G+ is imidazolium and U− is selected from the group consisting of hexafluorophosphate, tetrafluoroborate, triflate, hydrochloride, trifluoroacetate, dichloroacetate, −O-mesyl, −O-tosyl, −Br, and −O-trifluorosulfonyl.
- 79. The method of claim 78 wherein U− is selected from the group consisting of hexafluorophosphate, tetrafluoroborate, and triflate.
- 80. The method of claim 78 wherein U− is selected from the group consisting of hydrochloride, trifluoroacetate, dichloroacetate, −O-mesyl, −O-tosyl, −Br, and −O-trifluorosulfonyl.
- 81. The method of claim 43 wherein G+ is benzimidazolium and U− is selected from the group consisting of hexafluorophosphate, tetrafluoroborate, triflate, hydrochloride, trifluoroacetate, dichloroacetate, −O-mesyl, −O-tosyl, −Br, and −O-trifluorosulfonyl.
- 82. The method of claim 81 wherein U− is selected from the group consisting of hexafluorophosphate, tetrafluoroborate, and triflate.
- 83. The method of claim 81 wherein U− is selected from the group consisting of hydrochloride, trifluoroacetate, dichloroacetate, −O-mesyl, −O-tosyl, −Br, and −O-trifluorosulfonyl.
- 84. The method of claim 43 wherein the activator is imidazolium triflate.
- 85. The method of claim 1 wherein B is devoid of exocyclic amine protection.
- 86. The method of claim 12 wherein B is devoid of exocyclic amine protection.
- 87. The method of claim 18 wherein B is devoid of exocyclic amine protection.
- 88. The method of claim 24 wherein B is devoid of exocyclic amine protection.
- 89. The method of claim 29 wherein B is devoid of exocyclic amine protection.
- 90. The method of claim 43 wherein B is devoid of exocyclic amine protection.
- 91. The method of claim 84 wherein B is devoid of exocyclic amine protection.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims benefit of U.S. provisional application No. 60/087,757, filed Jun. 2, 1998, the contents of which are hereby incorporated by reference in their entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60087757 |
Jun 1998 |
US |
Divisions (2)
|
Number |
Date |
Country |
Parent |
09708224 |
Nov 2000 |
US |
Child |
10318628 |
Dec 2002 |
US |
Parent |
09177953 |
Oct 1998 |
US |
Child |
09708224 |
Nov 2000 |
US |