Claims
- 1. A compound of the formula:
- 2. An ester of the formula (II)
- 3. An ester according to claim 1 where PROT is t-butoxycarbonyl.
- 4. An ester according to claim 1 where PROT is benzyloxycarbonyl.
- 5. An ester according to claim 1 where R1 is C1-C2 alkyl.
- 6. An ester according to claim 5 where R1 is C` alkyl.
- 7. An ester according to claim 1 which is selected from the group consisting of
(2S)-2-[(tert-butoxycarbonyl)amino]-3-(3,5-difluorophenyl)propanoic acid methyl ester and methyl (2S)-2-[[(benzyloxy)carbonyl]amino]-3-(3,5-difluorophenyl)propanoate.
- 8. A compound of the formula
- 9. A compound according to claim 8 where R2 is —Cl.
- 10. A compound according to claim 8 where R2 is —Br.
- 11. A compound according to claim 8 which is (2S,3S)-3-amino-1-chloro-4-(3,5-difluorophenyl)butan-2-ol.
- 12. A compound of the formula:
- 13. A compound of the formula:
- 14. A compound according to claim 13 where PROT is t-butoxycarbonyl or benzyloxycarbonyl.
- 15. A compound according to claim 13 where XI is —Cl.
- 16. A compound (XI) according to claim 13 where the compound is t-butyl-(1S)-2-chloro-1-[3,5-difluorobenzyl]-2-oxoethylcarbamate.
- 17. A compound of the formula:
- 18. A compound according to claim 17 where the PROT is t-butoxycarbonyl or benzyloxycarbonyl.
- 19. A compound according to claim 17 where R1 is C1-C2 alkyl.
- 20. A compound according to claim 19 where R1 is C1 alkyl.
- 21. A compound according to claim 17 which is methyl (2Z)-2-[[(benzyloxy)carbonyl]-3-(3,5-difluorophenyl)-2-propenonate.
- 22. A compound of the formula:
- 23. A compound according to claim 22 where R1 is C1-C2 alkyl.
- 24. A compound according to claim 23 where R1 is C1 alkyl.
- 25. A compound according to claim 22 which is methyl (2S)-2-amino-3-(3,5-difluorophenyl)propanoate.
- 26. A process for the preparation of an ester of the formula:
- 27. A process according to claim 26 where PROT is t-butoxycarbonyl or benzyloxycarbonyl.
- 28. A process according to claim 26 where the base is hydroxide, carbonate, bicarbonate, LDA, n-(C1-C8 alkyl)lithium, LiHMDS, NaHMDS or KHMDS.
- 29. A process according to claim 28 where the base is hydroxide, carbonate, or bicarbonate.
- 30. A process according to claim 29 where the base is carbonate.
- 31. A process according to claim 26 where the alkylating agent is dimethylsulfate, methyl iodide or methyl triflate.
- 32. A process according to claim 31 where the alkylating agent is dimethylsulfate.
- 33. A process according to claim 26 where when the base is LDA, n-(C1-C8 alkyl)lithium, LiHMDS or KHDMS, and the mixture of (a) is cooled to a range of from about −78° to about 25° prior to the addition of the base.
- 34. A process according to claim 33 where the mixture of (a) is cooled to a range of from about −20° to about 25° prior to the addition of the base.
- 35. A process according to claim 26 where the mixture of (b) is heated from about 20° to about 50°.
- 36. A process according to claim 26where the ester (II) is (2S)-2-[(tert-butoxycarbonyl)amino]-3-(3,5-difluorophenyl)propanoic acid methyl ester.
- 37. A process for the preparation of an ester of the formula:
- 38. A process according to claim 37 where PROT is t-butoxycarbonyl and benzyloxycarbonyl.
- 39. A process according to claim 37 where the activating agent is CDI.
- 40. A process according to claim 37 where the activating agent is DCC.
- 41. A process for the preparation of a ketone of formula III:
- 42. A process according to claim 41 where PROT is t-butoxycarbonyl or benzyloxycarbonyl.
- 43. A process according to claim 41 where R1 is C1-C2 alkyl.
- 44. A process according to claim 43 where R1 is C1 alkyl.
- 45. A process according to claim 41 where R2 is chloro or bromo.
- 46. A process according to claim 45 where R2 is chloro.
- 47. A process according to claim 41 where CH2R2X2 is present in an amount of from about 1 to about 1.5 equivalents based on the amount of ester II.
- 48. A process according to claim 41 where X2 is iodo.
- 49. A process according to claim 41 where the strong base is LDA, (C1-C8 alkyl)lithium, LiHMDS, NaHMDS or KHMDS.
- 50. A process according to claim 49 where the strong base is LDA.
- 51. A process according to claim 41 where the strong base is present in an amount of from about 2 to about 2.5 equivalents based on the amount of ester II.
- 52. A process according to claim 41 where a second portion of base is added, where the second portion of base is (C1-C4)alkyl lithium, phenyl lithium, (C1-C4)alkyl-Grignard or phenyl-Grignard.
- 53. A process according to claim 52 where the second base is phenyl lithium, n-butyl lithium, sec-butyllithium, tert-butyllithium, methyllithium, methyl magnesium bromide, methyl magnesium chloride, phenyl magnesium bromide or phenyl magnesium chloride.
- 54. A process according to claim 53 where the second base is n-butyl lithium.
- 55. A process according to claim 41 where amount of the second is from about 1 to about 1.5 equivalents based on the amount of the ester II.
- 56. A process according to claim 41 where the acidifying is carried out using an acid having a pKa of less than about 10.
- 57. A process according to claim 56 where the acid is selected from the group consisting of acetic, sulfuric, hydrochloric, citric, phosphoric, nitric, paratoluenesulfonic, and benzoic acids and mixtures thereof.
- 58. A process according to claim 57 where the acid is hydrochloric acid or acetic acid.
- 59. A process for according to claim 41 where the ketone (III) is tert-butyl (1S)-3-chloro-1-(3,5-difluorobenzyl)-2-oxopropylcarbamate.
- 60. A process for the preparation of a ketone of formula (III)
- 61. A process according to claim 60 where PROT is t-butoxycarbonyl or benzyloxycarbonyl.
- 62. A process according to claim 60 where R1 is C1-C2 alkyl.
- 63. A process according to claim 62 where R1 is C1 alkyl.
- 64. A process according to claim 60 where R2 is chloro or bromo.
- 65. A process according to claim 64 where R2 is chloro.
- 66. A process according to claim 60 where the base is a strong base and is LDA, (C1-C8 alkyl)lithium, LiHMDS, NaHMDS or KHMDS.
- 67. A process according to claim 66 where the strong base is LDA.
- 68. A process according to claim 60 where the strong base is present in an amount of from about 3 to about 3.5 equivalents based on the amount of ester II.
- 69. A process according to claim 60 where the acidifying is carried out using an acid having a pKa of less than about 10.
- 70. A process according to claim 69 where the acid is selected from the group consisting of acetic, sulfuric, hydrochloric, citric, phosphoric and benzoic acids and mixtures thereof.
- 71. A process according to claim 70 where the acid is hydrochloric or acetic acid.
- 72. A process for the preparation of a compound of formula (XI)
- 73. A process according to claim 72 where PROT is t-butoxycarbonyl or benzyloxycarbonyl.
- 74. A process according to claim 72 where X1 is chloro.
- 75. A process according to claim 72 where the compound of formula XI is contacted with thionyl chloride or oxalyl chloride.
- 76. A process according to claim 72 where the process produces t-butyl-(1S)-2-chloro-1-[3,5-difluorobenzyl]-2-oxoethylcarbamate.
- 77. A process for the preparation of ketone of formula (III)
- 78. A process according to claim 77 where PROT is t-butoxycarbonyl or benzyloxycarbonyl.
- 79. A process according to claim 77 where X1 is chloro.
- 80. A process according to claim 77 where R2 is chloro.
- 81. A process according to claim 77 where the process produces tert-butyl (1S)-3-chloro-1-(3,5-difluorobenzyl)-2-oxopropylcarbamate.
- 82. A process for the preparation of an ester of the formula (II)
- 83. A process according to claim 82 where the PROT is t-butoxycarbonyl or benzyloxycarbonyl.
- 84. A process according to claim 82 where R1 is C1-C2 alkyl.
- 85. A process according to claim 84 where R1 is C1 alkyl.
- 86. A process according to claim 82 where the solvent of step (a) is degassed.
- 87. A process according to claim 82 where the reaction vessel is purged of oxygen after step (1) and before step (2).
- 88. A process according to claim 69 where the hydrogenation catalyst is a compound of the formula [Rh(diene)L]+X−where Rh is rhodium; where diene is cyclootediene and nonbornadiene; where L is DIPMAP, MeDuPhos, EtDuPhos, Binaphane, f-Binaphane, Me-KetalPhos, Me-f-KetalPhos, Et-f-KetalPhos, BINAP, DIOP, BPPFA, BPPM, CHIRAPHOS, PROPHOS, NORPHOS, CYCLOPHOS, BDPP, DEGPHOS, PNNP and where X− is ClO4−, BF4−, CF3—SO3−, Cl−, Br−, PF6− and SbF6−.
- 89. A process according to claim 88 where the hydrogenation catalyst is DIPMAP.
- 90. A process according to claim 88 where the hydrogenation catalyst is EtDuPhos.
- 91. A process according to claim 82 where the reaction temperature is from about 0° to about reflux.
- 92. A process according to claim 91 where the reaction temperature is from about 0° to about 25°.
- 93. A process according to claim 82 where the reaction pressure is from about 1 atmosphere to about 70 psig.
- 94. A process according to claim 93 where the reaction pressure is from about 10 psig to about 40 psig.
- 95. A process according to claim 82 where the ester (II) is obtained in greater than 90% enantiomeric purity.
- 96. A process according to claim 95 where the ester (II) is obtained in greater than 95% enantiomeric purity.
- 97. A process according to claim 82 where the ester (II) is methyl (2S)-2-{[(benzyloxy)carbonyl]amino}-3-(3,5-difluorophenyl)propanoate.
- 98. A process for preparing an epoxide of formula V-R
- 99. A process according to claim 98 further comprising esterifying an acid of formula (O) to generate the ester of formula II.
- 100. A process for preparing a compound of formula (XX)
- 101. A process according to claim 100, further comprising contacting the epoxide with an amine of formula RCNH(R57) to yield a protected amine of formula VII-1.
- 102. A process according to claim 101, further comprising forming a deprotected amine of formula VIII-1 and forming an amide using the amine of formula VIII-1 and a compound of the RNCOZ, wherein Z is OH, Cl, or imidazolyl.
- 103. An amino alcohol of the formula:
- 104. A compound of the formula
- 105. A compound of the formula
- 106. A compound of the formula
- 107. A process for preparing compounds of the formula
- 108. A process for preparing compounds of the formula:
- 109. A method for preparing a compound of the formula
- 110. A method according to claim 109 wherein the reducing agent is NaBH4, NaCNBH3, or hydrogen and a catalyst.
- 111. A method according to claim 110 wherein the reducing agent is hydrogen and a catalyst.
- 112. A method according to claim 111 wherein the hydrogenation is carried out at a pressure of from 1 atmosphere to about 100 psi.
- 113. A method for preparing a compound of the formula
- 114. A method for preparing a compound of the formula
- 115. A method according to claim 114 wherein, the base has a pKb 30 or greater.
- 116. A method for preparing a compound of the formula
- 117. A method for preparing a compound of the formula
Parent Case Info
[0001] This application claims priority from U.S. Provisional Application Serial No. 60/285,772, filed Apr. 23, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60285772 |
Apr 2001 |
US |