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核苷。139. 2'-氟阿拉伯糖基嘧啶核苷5'-修饰类似物的合成及其抗巨细胞病毒和抗单纯疱疹病毒活性

Nucleosides. 139. Synthesis and anticytomegalovirus and antiherpes simplex virus activity of 5'-modified analogues of 2'-fluoroarabinosylpyrimidine nucleosides.

作者信息

Harada K, Matulic-Adamic J, Price R W, Schinazi R F, Watanabe K A, Fox J J

出版信息

J Med Chem. 1987 Jan;30(1):226-9. doi: 10.1021/jm00384a041.

Abstract

In order to determine if modification of the 5'-position reduces or abolishes the antiviral activity of 2'-fluoro-5-iodo-ara-C (FIAC), 2'-fluoro-5-iodo-ara-U (FIAU), or 2'-fluoro-5-methyl-ara-U (FMAU) against human cytomegalovirus (HCMV) and herpes simplex virus (HSV), the 5'-deoxy, 5'-mercapto, and 5'-amino analogues of these nucleosides were prepared. 5'-Deoxy-FIAC and 5'-deoxy-FIAU were prepared by catalytic hydrogenation of 5'-iodo-FIAC and 5'-iodo-FIAU to 5'-deoxy-FAC and 5'-deoxy-FAU, respectively, followed by reiodination at C-5. Reduction of 5'-iodo-FMAU afforded 5'-deoxy-FMAU. These 5'-deoxy nucleosides were found to be inactive against HCMV, indicating that the conversion to 5'-phosphate by the cellular enzyme(s) is a requirement for antiviral activity against this virus. Other 5'-modified (NH2 and SH) analogues were also prepared from 5'-O-tosyl-FIAC and 5'-O-tosyl-FMAU. Treatment of these tosylates with LiN3 in DMF afforded the corresponding 5'-N3 products. Catalytic hydrogenation of 5'-N3-FMAU afforded 5'-NH2-FMAU, whereas 5'-NH2-FIAC was obtained by treatment of 5'-N3-FIAC with Ph3P in pyridine. 5'-Mercapto analogues were prepared by treatment of 5'-O-tosyl-3'-O-acetyl nucleosides with KSAc followed by deacetylation. 5'-NH2-FMAU was the only compound that showed good activity against HSV-1 and HSV-2 in vitro. However, this compound was less potent and had a lower therapeutic index than FMAU.

摘要

为了确定5'-位修饰是否会降低或消除2'-氟-5-碘阿糖胞苷(FIAC)、2'-氟-5-碘阿糖尿苷(FIAU)或2'-氟-5-甲基阿糖尿苷(FMAU)对人巨细胞病毒(HCMV)和单纯疱疹病毒(HSV)的抗病毒活性,制备了这些核苷的5'-脱氧、5'-巯基和5'-氨基类似物。5'-脱氧-FIAC和5'-脱氧-FIAU分别通过将5'-碘-FIAC和5'-碘-FIAU催化氢化为5'-脱氧阿糖胞苷(FAC)和5'-脱氧阿糖尿苷(FAU),然后在C-5位重新碘化来制备。5'-碘-FMAU还原得到5'-脱氧-FMAU。发现这些5'-脱氧核苷对HCMV无活性,这表明通过细胞酶转化为5'-磷酸是针对该病毒产生抗病毒活性的必要条件。其他5'-修饰(NH2和SH)类似物也由5'-O-甲苯磺酰基-FIAC和5'-O-甲苯磺酰基-FMAU制备。在DMF中用LiN3处理这些甲苯磺酸酯得到相应的5'-叠氮产物。5'-N3-FMAU催化氢化得到5'-NH2-FMAU,而5'-NH2-FIAC通过在吡啶中用Ph3P处理5'-N3-FIAC获得。5'-巯基类似物通过用KSAc处理5'-O-甲苯磺酰基-3'-O-乙酰基核苷然后脱乙酰来制备。5'-NH2-FMAU是唯一在体外对HSV-1和HSV-2表现出良好活性的化合物。然而,该化合物的效力低于FMAU,治疗指数也较低。

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