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3'-C-支链2'-脱氧-5-甲基尿苷:合成、酶抑制及抗病毒特性

3'-C-branched 2'-deoxy-5-methyluridines: synthesis, enzyme inhibition, and antiviral properties.

作者信息

Fedorov I I, Kazmina E M, Novicov N A, Gurskaya G V, Bochkarev A V, Jasko M V, Victorova L S, Kukhanova M K, Balzarini J, De Clercq E

机构信息

Moscow Medical Sechenov Academy, Russia.

出版信息

J Med Chem. 1992 Nov 27;35(24):4567-75. doi: 10.1021/jm00102a009.

Abstract

A synthesis scheme for 3'-C-methyl-2'-deoxynucleosides and 3'-C-methylidene-2',3'-dideoxy-5-methyluridine has been proposed with 2-deoxyribose as the starting material. Methyl 5-O-benzoyl-2-deoxyribofuranose was oxidized and the mixture of the 3'-keto derivatives was separated into the alpha- and beta-anomers. The beta-keto derivative was converted by reaction with MeMgBr, and after reaction with thymine and subsequent deprotection 1-(3'-C-methyl-2'-alpha-deoxy-alpha-D-threo-pentofuranosyl)thymine and its beta-anomer were obtained. The same reactions with the alpha-keto sugar gave 1-(3'-C-methyl-2'-deoxy-alpha-D-erythro-pentofuranosyl)thymine and its beta-anomer. 1-(5-O-Benzoyl-3'-C-methyl-2'-deoxy-alpha-D-threo-pentofuranosyl)thymine was converted to a mixture of 3'-C-methylidene-2',3'-dideoxy-5-methyluridine and 3'-C-methyl-2',3'-dideoxy-2',3'-didehydro-5-methyluridine, which were separated. The stereoselectivity of the Grignard reagent's attachment to 2-deoxyfuranose 3-ulosides has been ruled by the substitute configuration at Cl. Also, the effect of the hydroxyl or OBz group configuration at C3 on the condensation stereoselectivity of 3-C-methyl-2-deoxyfuranosides with silylated thymine has been studied. The structure of the obtained compounds was proved by 1H NMR UV, 13C NMR, and CD spectroscopy, as well as elemental (C, H, N) analysis. The C2'-endo-C1'-exo conformation, the anti conformation of thymine in relation to the glycosidic bond, and the gauche+conformation in relation to the C4'-C5' bond are characteristic for the 3'-C-methyl-2'-deoxythymidine structure in the crystals. 3'-C-Methyl-2'-deoxythymidine 5'-triphosphate was synthesized and proved to be a competitive inhibitor, with respect to dTTP, of a number of DNA polymerases, including the reverse transcriptases of human immunodeficiency virus type 1 (HIV-1) and avian myeloblastosis virus (AMV). None of the DNA polymerases examined were able to incorporate this compound into the growing DNA chain. In contrast, 3'-C-methylidene-2',3'-dideoxy-5-methyluridine 5'-triphosphate was found to be incorporated at the 3'-end of the DNA chain by HIV-1 reverse transcriptase, albeit with very low efficiency. 3'-C-Methyl-2'-deoxy-5-methyluridine did not suppress HIV-1 replication in MT-4 cells at 500 microM while its 5'-phosphite derivative exhibited modest anti-HIV-1 activity.

摘要

已提出以2-脱氧核糖为起始原料合成3'-C-甲基-2'-脱氧核苷和3'-C-亚甲基-2',3'-二脱氧-5-甲基尿苷的方案。5-O-苯甲酰基-2-脱氧核糖呋喃糖被氧化,3'-酮衍生物的混合物被分离为α-和β-端基异构体。β-酮衍生物通过与MeMgBr反应进行转化,在与胸腺嘧啶反应并随后脱保护后,得到1-(3'-C-甲基-2'-α-脱氧-α-D-苏式-戊呋喃糖基)胸腺嘧啶及其β-端基异构体。与α-酮糖进行相同反应得到1-(3'-C-甲基-2'-脱氧-α-D-赤式-戊呋喃糖基)胸腺嘧啶及其β-端基异构体。1-(5-O-苯甲酰基-3'-C-甲基-2'-脱氧-α-D-苏式-戊呋喃糖基)胸腺嘧啶转化为3'-C-亚甲基-2',3'-二脱氧-5-甲基尿苷和3'-C-甲基-2',3'-二脱氧-2',3'-二氢-5-甲基尿苷的混合物,二者被分离。格氏试剂与2-脱氧呋喃糖3-酮糖苷连接的立体选择性受Cl处取代基构型的支配。此外,还研究了C3处羟基或OBz基团构型对3-C-甲基-2-脱氧呋喃糖苷与硅烷化胸腺嘧啶缩合立体选择性的影响。通过1H NMR、UV、13C NMR和CD光谱以及元素(C、H、N)分析证实了所得化合物的结构。晶体中3'-C-甲基-2'-脱氧胸苷结构的特征为C2'-内-C1'-外构象、胸腺嘧啶相对于糖苷键的反式构象以及相对于C4'-C5'键的邻位交叉+构象。合成了3'-C-甲基-2'-脱氧胸苷5'-三磷酸,并证明其相对于dTTP是多种DNA聚合酶的竞争性抑制剂,包括人类免疫缺陷病毒1型(HIV-1)和禽成髓细胞瘤病毒(AMV)的逆转录酶。所检测的DNA聚合酶均不能将该化合物掺入正在生长的DNA链中。相反,发现3'-C-亚甲基-2',3'-二脱氧-5-甲基尿苷5'-三磷酸能被HIV-1逆转录酶掺入DNA链的3'-末端,尽管效率非常低。3'-C-甲基-2'-脱氧-5-甲基尿苷在500 microM时不抑制MT-4细胞中的HIV-1复制,而其5'-亚磷酸酯衍生物表现出适度的抗HIV-1活性。

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