EP1501848A1

Synthesis of locked nucleic acid derivatives

Abstract

The invention relates to a novel strategy for the synthesis of Locked Nucleic Acid derivatives, such as alpha-L-oxy-LNA, amino-LNA, alpha-L-amino-LNA, thio-LNA, alpha-L-thio-LNA, seleno-LNA and methylene LNA, which provides scalable high yielding reactions utilising intermediates that also can produce other LNA analogues such as oxy-LNA. Also, the compounds of the formula X are important intermediates that may be reacted with varieties of nucleophiles leading to a wide variety of LNA analogues. (Formula I)

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Projected expiry passed 8 May 2023, 3.4 years ago.

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40 claims: 28 independent, 12 dependent

  1. 1
    Claims of equivalent WO 03095467 A1 CLAIMS 1. A method for the synthesis an LNA analogue of the general formula IV wherein X is selected from -CH 2 -, -NR H -, -O-, and -S-; Z is selected from -CH 2 -, -NR H -, -S-, and -Se-; B is a nucleobase; R 3 is selected from -R H , -N 3 , -NR H R H* , -NR H C(0)R H* , -C(0)NR H R H* , -OR H , -OC(0)R H , - C(0)OR H , -SR H , -SC(0)R H , and tri(C 1 .- 6 -alkyl/aryl)silyloxy; each R H and R H* independently being selected from hydrogen, optionally substituted Cι- 6 - alkyl, optionally substituted aryl, and optionally substituted aryl- -β-alkyl; A 4 and A 5 independently are selected from Q- 6 -alkylene; and R 5 is selected from iodo, bromo, chloro, Q t -β-alkylsulfonyloxy optionally substituted with one or more substituents selected from halogen and phenyl optionally substituted with one or more substituents selected from nitro, halogen and Q- 6 -alkyl, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, C h alky!, and C 1-6 -alkyl substituted with one or more halogen; said method comprising the following steps:treating an intermediate of the general formula I: / R » J 3 H Formula I wherein X, B, R 3 , A 4 , and A 5 are as defined above;R 2 is selected from iodo, Cι- 6 -alkylsulfonyloxy optionally substituted with one or more substituents selected from halogen and phenyl optionally substituted with one or more substituents selected from nitro, halogen and Cι -6 -alkyl, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, d-g-alkyl, and C 1-6 - alkyl substituted with one or more halogen;R 3 and R 2 may together form an epoxide and R 4 and R 5 independently are as defined for R 5 above, or R 4 and R 5 together constitutes a tetra(C 1 . 6 -alkyl)disiloxanylidene group;with a nucleophile selected from halogen, ~ N 3 , ~ NR H R H* , " SR H , " S, " SeR H , " Se, " NR H C(0)R H* , ~ SC(0)R H , and organometallic hydrocarbyl radicals, so as to substitute R , and effecting ring-closure between the C2' and C4' positions so as to yield the LNA analogue of the formula IV.
  2. 3
    The method according to any one of the preceding claims, wherein A 4 and A 5 are methylene.
  3. 4
    The method according to any one of the preceding claims, wherein X is -0-.
  4. 5
    The method according to any one of the preceding claims, wherein the intermediate has the formula II Formula II wherein B, R 2 , R 3 , R 4 , and R 5 are as defined in any of the claims 1-4 or wherein OR 3 and R 2 together form an epoxide.
  5. 6
    The method according to any one of the preceding claims, wherein B is selected from adenine, guanine, 2,6-diaminopurine, thymine, 2-thiothymine, cytosine, methyl cytosine, uracil, 5-fluorocytosine, xanthine, 6-aminopurine, 2-aminopurine, 6-chloro-2-amino- purine, and 6-chloropurine, R 2 is selected from Cι- 6 -alkylsu.fonyloxy substituted with one or more halogen, R 3 is benzyl, and R 4 and R 5 are independently selected from C 1-6 - alkylsulfonyloxy optionally substituted with one or more substituents selected from halogen and phenyl optionally substituted with one or more substituents selected from nitro, halogen and Ci- 6 -alkyl, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, Cι- 6 -alkyl, and Cι- 6 -alkyl substituted with one or more halogen.
  6. 7
    The method according to any one of the preceding claims, wherein R 4 and R 5 are independently selected from methanesulfonyloxy, trifluoromethanesulfonyloxy, ethanesulfonyloxy, 2,2,2-trifluoroethanesulfonyloxy, propanesulfonyloxy, iso- propanesulfonyloxy, butanesulfonyloxy, nonafluorobutanesulfonyloxy, pentanesulfonyloxy, cyclopentanesulfonyloxy, hexanesulfonyloxy, cyclohexanesuifonyloxy, - toluenesulfonyloxy, 2-chloro-α-toluenesulfonyloxy, ortΛo-toluenesulfonyloxy, meta- toluenesulfonyloxy, para-toluenesulfonyloxy, benzenesulfonyloxy, ortho- bromobenzenesulfonyloxy, meta-bromobenzenesulfonyloxy, para-bromobenzene- sulfonyloxy, orf ή o-nitrobenzenesulfonyloxy, meta-nitrobenzenesulfonyloxy and para-nitro- benzenesulfonyloxy.
  7. 8
    The method according to any one of the preceding claims, wherein the intermediate has the formula III Formula III wherein B, R 3 , R 4 and R 5 are as defined in any of the preceding claims. 5
  8. 9
    The method according to any one of the preceding claims, wherein B is selected from adenine, guanine, 2,6-diaminopurine, thymine, 2-thiothymine, cytosine, methyl cytosine, uracil, 5-fluorocytosine, xanthine, 6-aminopurine, 2-aminopurine, 6-chloro-2-amino- purine, and 6-chloropurine, R 3 is benzyl, and R 4 and R 5 are both methylsulfonyloxy.
  9. 10
    10 10. The method according to any one of the preceding claims, wherein the nucleophile is selected from " N 3 , " NR H R H* , _ SR H , " S, " NR H C(0)R H* , and " SC(0)R H .
  10. 11
    The method according to any one of the preceding claims, wherein Z is -S-. 15
  11. 14
    The method according to any one of the claims 1-10, wherein Z is -NH-.
  12. 17
    The method according to any one of the claims 14-16, wherein the synthesis further 30 comprises the step of converting the LNA analogue wherein Z is -NH- to an LNA analogues where Z is -N(C 1 . 6 -alkyl)- or N(aryl) by reacting a solution of the former LNA analogue with a reducing agent and a Ci-e-alkanal or an aromatic aldehyde or where Z is N(acyl) by reacting with an acid chloride or an acid anhydride. 35
  13. 19
    A method for the synthesis of a compound of the formula I R * H Formula I wherein X is selected from -CH 2 -, -NR H -, -O-, and -S-;B is a nucleobase;R 2 is selected from iodo, Q-e-alkylsulfonyloxy optionally substituted with one or more substituents selected from halogen and phenyl optionally substituted with one or more substituents selected from nitro, halogen and C^-alky!, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, Cj- 6 -alkyl, and C h alky! substituted with one or more halogen;R 3 is selected from -R H , -N 3 , -NR H R H* , -C(0)NR H R H* , -OR H , -OC(0)R H , - C(0)OR H , -SR H , -SC(0)R H , and tr -e-alkyl/ary silyloxy;each R H and R H* independently being selected from hydrogen, optionally substituted C h alky!, optionally substituted aryl, and optionally substituted aryl-Cι- 6 -alkyl;A 4 and A 5 independently are selected from C^-alkylene;and R 4 and R s independently are selected from iodo, bromo, chloro, Ci- 6 -alkylsulfonyloxy optionally substituted with one or more substituents selected from halogen and phenyl optionally substituted with one or more substituents selected from nitro, halogen and C^- alkyl, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, C^-alky!, and C^-alky! substituted with one or more halogen. said method comprising inversion of orientation of the substituent in the C2' position of a compound of the formula VII R J H Formula VII wherein R 2* is selected from iodo, Cx-β-alkylsulfonyloxy optionally substituted with one or more substituents selected from halogen and phenyl optionally substituted with one or more substituents selected from nitro, halogen and C 1-6 -alkyl, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, C^-alky!, and C h alky! substituted with one or more halogen;and X, B, R 3 , R 4 , A 4 , R 5 and A 5 are as defined above.
  14. 22
    The method according to any one of the claims 19-21, wherein R 2 is selected from Q-β-alkylsulfonyloxy optionally substituted with one or more substituents selected from halogen and phenyl optionally substituted with one or more substituents selected from nitro, halogen and - 6 -alkyl, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, Cj-e-alkyl, and C h alky! substituted with one or more halogen;R 3 is optionally substituted aryl(Cι. 6 -alkyl)oxy;and R 4 and R 5 are independently selected from Q.g-alkylsulfonyloxy optionally substituted with one or more substituents selected from halogen and phenyl optionally substituted with one or more substituents selected from nitro, halogen and C^-alkyl, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, C 1-6 - alkyl, and Q-β-alkyl substituted with one or more halogen.
  15. 23
    The method according to any one of the claims 19-22, wherein A 4 and A 5 are methylene.
  16. 24
    The method according to any one of the claims 19-23, wherein X is -0-.
  17. 25
    The method according to any one of the claims 19-24, wherein the compound of the formula I has the formula II Formula II wherein B, R 2 , R 3 , R 4 , and R 5 are as defined in any of the claims 19-24 or wherein OR 3 and R 2 together form an epoxide.
  18. 26
    The method according to any one of the claims 19-25, wherein B is selected from adenine, guanine, 2,6-diaminopurine, thymine, 2-thiothymine, cytosine, methyl cytosine, uracil, 5-fluorocytosine, xanthine, 6-aminopurine, 2-aminopurine, 6-chloro-2-amino- purine, and 6-chloropurine, R 2 is selected from C 1 .. 6 -alkylsulfonyloxy substituted with one or more halogen, R 3 is benzyl, and R 4 and R 5 are independently selected from C ! - 6 - alkylsuifonyloxy optionally substituted with one or more substituents selected from halogen and phenyl optionally substituted with one or more substituents selected from nitro, halogen and C^-alky!, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, Cι- 6 -alkyl, and Ci-e-alkyl substituted with one or more halogen.
  19. 27
    The method according to any of the claims 19-26, wherein R 4 and R 5 are independently selected from methanesulfonyloxy, trifluoromethanesulfonyloxy, ethanesulfonyloxy, 2,2,2- trifluoroethanesulfonyloxy, propanesulfonyloxy, iso-propanesulfonyloxy, butanesulfonyloxy, nonafluorobutanesulfonyloxy, pentanesulfonyloxy, cyclopentanesulfonyloxy, hexanesulfonyloxy, cyclohexanesuifonyloxy, α-toluenesulfonyloxy, 2-chloro-α-toluenesulfonyloxy, ortΛo-toluenesulfonyloxy, meta-toluenesulfonylox , para-toluenesulfonyloxy, benzene- sulfonyloxy, orfΛo-bromobenzenesulfonyloxy, meta-bromobenzenesulfonyloxy, para- bromobenzenesulfonyioxy, orfήo-nitrobenzenesulfonyloxy, meta-nitrobenzenesulfonyloxy, and para-nitrobenzenesulfonyloxy.
  20. 28
    The method according to any one of the claims 19-27, wherein the compound of the formula I has the formula III Formula III 5 wherein B, R 3 , R 4 and R 5 are as defined in any one of the claims 19-27.
  21. 29
    The method according to any one of the claim 19-28, wherein B is selected from adenine, guanine, 2,6-diaminopurine, thymine, 2-thiothymine, cytosine, methyl cytosine, uracil, 5-fluorocytosine, xanthine, 6-aminopurine, 2-aminopurine, 6-chloro-2-amino- 10 purine, and 6-chloropurine, R 3 is benzyl, and R 4 and R 5 are both methylsulfonyloxy.
  22. 30
    The method according to any one of claims 19-29, wherein B is a pyrimidine-type base and the inversion is facilitated by the formation of a 2,2'-anhydronucIeoside. 15
  23. 31
    The method according to any one of claims 19-30, wherein B is a purine-type base and the inversion is effected by reaction of the compound of the formula VII with an oxygen nucleophile or a halogen.
  24. 33
    A compound of the formula I / \ / N 25 R 3 H Formula I wherein X is selected from -CH 2 -, -NR H -, -0-, and -S-;B is a nucleobase;R 2 is selected from iodo, Cj-e-alkylsulfonyloxy optionally substituted with one or more substituents selected from halogen and phenyl optionally substituted with one or more substituents selected from nitro, halogen and Cj- 6 -alkyl, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, Cι- 6 -alkyl, and C α - 6 - alkyl substituted with one or more halogen;R 3 is selected from -R H , -N 3 , -NR H R H* , -NR H C(0)R H* , -C(0)NR H R H* , -OR H , -OC(0)R H , - C(0)OR H , -SR H , -SC(0)R H , and tri(C 1-6 -alkyl/aryl)silyloxy;R 3 and R 2 may together form an epoxide;each R H and R H* independently being selected from hydrogen, optionally substituted C h alky!, optionally substituted aryl, and optionally substituted aryl-Cι- 6 -alkyl;A 4 and A 5 independently are selected from Ci- 6 -alkylene;and R 4 and R 5 independently are selected from iodo, bromo, chloro, C t - 6 -alkylsulfonyloxy optionally substituted with one or more substituents selected from halogen and phenyl optionally substituted with one or more substituents selected from nitro, halogen and C h alky!, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, Cι -6 -alkyl, and C t - 5 -alkyl substituted with one or more halogen, or R 4 and R 5 together constitutes a tetra(Cι- 6 -alkyl)disiloxanylidene group;with the proviso that the compound is not selected from l-(3-azido-3-deoxy-2,5-di-0-methanesulfonyl-4-C-(methansulfonyloxymethyl)-^-D- eryt/?ro-pentofuranosyl)thymine, l-(3-0-benzyl-2,5-di-0-methanesuIfonyl-4-C-(methansulfonyloxymethyl)-^-D-er/t/7ro- pentofuranosyl)thymine, and l-(3-0-benzyl-2,5-di-0-methanesulfonyl-4-C-(methansulfonyIoxymethyl)-α-L-t/7reo- pentofuranosyl)thymine.
  25. 35
    The compound according to any one of the claims 33-34, wherein A 4 and A 5 are methylene.
  26. 36
    The compound according to any one of the claims 33-35, wherein X is -0-.
  27. 37
    The compound according to any one of the claims 33-36, wherein R 3 and R 2 together form an epoxide. 5
  28. 38
    The compound according to any one of the claims 35-36, wherein the compound has the formula II Formula II 10 wherein B, R 2 , R 3 , R 4 , and R 5 are as defined in any of the claims 33-36, or wherein OR 3 and R 2 together form an epoxide
  29. 39
    The compound according to any one of the claims 33-38, wherein B is selected from 15 adenine, guanine, 2,6-diaminopurine, thymine, 2-thiothymine, cytosine, methyl cytosine, uracil, 5-fluorocytosine, xanthine, 6-aminopurine, 2-aminopurine, 6-chloro-2-amino- purine, and 6-chloropurine, R 2 is selected from C t - 6 -alkylsulfonyloxy substituted with one or more halogen, R 3 is benzyl, and R 4 and R 5 are independently selected from Cι- 6 - alkylsulfonyloxy optionally substituted with one or more substituents selected from 20 halogen and phenyl optionally substituted with one or more substituents selected from nitro, halogen and C^-alky!, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, Q- 6 -alkyl, and Cι- 6 -alkyl substituted with one or more halogen. 25 40. The compound according to any one of the claims 33-39, wherein R 4 and R 5 are independently selected from methanesulfonyloxy, trifluoromethanesulfonyloxy, ethanesulfonyloxy, 2,2,2-trifluoroethanesulfonyloxy, propanesulfonyloxy, iso- propanesulfonyloxy, butanesulfonyloxy, nonafluorobutanesulfonyloxy, pentanesulfonyloxy, cyclopentanesulfonyloxy, hexanesulfonyloxy, cyclohexanesuifonyloxy, α- 30 toluenesulfonyloxy, 2-chloro-α-toluenesulfonyloxy, orf/70-toluenesulfonyloxy, meta- toluenesulfonyloxy, para-toluenesulfonyloxy, benzenesulfonyloxy, ortho- bromobenzenesulfonyloxy, meta-bromobenzenesulfonyloxy, para-bromobenzene- sulfonyloxy, ort/70-nitrobenzenesulfonyloxy, meta-nitrobenzenesulfonyloxy, and para-nitro- benzenesulfonyloxy. 35 41. The compound according to any of the claims 33-40, wherein the compound has the formula III Formula III wherein B, R , R and R are as defined in any of the claims 33-39. 42. The compound according to claim 33-41, wherein B is selected from adenine, guanine, 2,6-diaminopurine, thymine, 2-thiothymine, cytosine, methyl cytosine, uracil, 5- fluorocytosine, xanthine, 6-aminopurine, 2-aminopurine, 6-chloro-2-amino-purine, and 6- chloropurine, R 3 is benzyl, and R 4 and R 5 are both methylsulfonyloxy. 43. A compound according to claim 33, which is one of those illustrated in Figure 13. 44. A method for the synthesis of an LNA analogue of the formula IV said method comprising synthesis of a compound of the formula I from a compound of the formula VII as defined in any of claims 19-32, and conversion of the compound of the formula I to an LNA analogues of the formula IV as defined in any of the claims 1-18. 45. A method for the synthesis an LNA analogue of the general formula VIII Formula VIII wherein X is selected from -CH 2 -, -NR H -, -0-, and -S-; Z is selected from -CH 2 -, -NR H -, -0-, -S-, and -Se-; B is a nucleobase; R 3 is selected from -R H , -N 3 , -NR H R H* , -NR H C(0)R H* , -C(0)NR H R H* , -OR H , -OC(0)R H , C(0)OR H , -SR H , -SC(0)R H , and tri(C 1-6 -alkyl/aryl)silyloxy; each R H and R H* independently being selected from hydrogen, optionally substituted C h alky!, optionally substituted aryl, and optionally substituted aryl-Ci-β-alkyl; A 4 and A 5 independently are selected from Q t -β-alkylene; and R 5 is selected from iodo, bromo, chloro, Cι- 6 -alkylsulfonyloxy optionally substituted with one or more substituents selected from halogen and phenyl optionally substituted with one or more substituents selected from nitro, halogen and C 1-6 -alkyl, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, C h alky!, and Ci- 6 -alkyl substituted with one or more halogen; said method comprising the following steps:treating an intermediate of the general formula IX: Formula IX wherein X, B, R 3 , A 4 , and A 5 are as defined above;R 2 is selected from iodo, -β-alkylsulfonyloxy optionally substituted with one or more substituents selected from halogen and phenyl optionally substituted with one or more 5 substituents selected from nitro, halogen and Q.g-alkyl, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, C^-alky!, and C h alky! substituted with one or more halogen;R 3 and R 2 may together form an epoxide;and R 4 and R 5 independently are as defined for R 5 above, or R 4 and R 5 together constitutes a 10 tetra(C 1 - 6 -alkyl)disiloxanylidene group;with a nucleophile selected from halogen, " N 3 , " NR H R H* , " OR H , " OH, " SR H , " " S, " SeR H , " " Se, ~ NR H C(0)R H* , " SC(0)R H , and organometallic hydrocarbyl radicals, 15 so as to substitute R 2 , and effecting ring-closure between the C2' and C4' positions so as to yield the LNA analogue of the formula VIII. 20 46. The method according to claim 45, wherein R 3 and R 2 in the intermediate of the general formula IX, together form an epoxide. 47. The method according to claim 45, wherein R 2 is selected from C 1-6 -alkylsulfonyloxy optionally substituted with one or more 25 substituents selected from halogen and phenyl optionally substituted with one or more substituents selected from nitro, halogen and Cι- 6 -aIkyl, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, Q- 6 -alkyl, and C h alky, substituted with one or more halogen;R 3 is optionally substituted ary Q-ε-alky oxy;and 30 R 4 and R 5 are independently selected from Cj-e-alkylsulfonyloxy optionally substituted with one or more substituents selected from halogen and phenyl optionally substituted with one or more substituents selected from nitro, halogen and Cj-β-alkyl, and arylsulfonyloxy optionally substituted with one or more substituents selected from nitro, halogen, C h alky!, and C 1-6 -alkyl substituted with one or more halogen. 35 48. The method according to any one of the claims 45-47, wherein A 4 and A 5 are methylene.
  30. 40
    40 49. The method according to any one of the claims 45-48, wherein X is -0-. 50.The method according to any one of claim 45-49, wherein the nucleophile is selected from " N 3 , " NR H R H* , " SR H , " S, " OR H , OH, " NR H C(0)R H* , and " SC(0)R H . 51. The method according to any of the claim 45, and 47-50 wherein the intermediate has the formula X Formula X wherein B, R 2 , R 3 , R 4 , and R 5 are as defined in any of the claims 44-47. 52. The method according to any one of claims 45-51, wherein the nucleophile is a hydroxide. 53. The compound of the formula X Formula X wherein B, R 3 , R 4 and R 5 are as defined in any of the claims 45,47-52. 54. The compound according to claim 53, wherein B is selected from adenine, guanine, 2,6-diaminopurine, thymine, 2-thiothymine, cytosine, methyl cytosine, uracil, 5- fluorocytosine, xanthine, 6-aminopurine, 2-aminopurine, 6-chloro-2-amino-purine, and 6- chloropurine, R 3 is benzyl, and R 4 and R 5 are both methylsulfonyloxy. 55. The compound of formula XI XI wherein R is any of compounds 45, 46, 47, 48 or 49 in Figure 7.
Independent claims30