Chang C N, Skalski V, Zhou J H, Cheng Y C
Department of Pharmacology, Yale University School of Medicine, New Haven, Connecticut 06510.
J Biol Chem. 1992 Nov 5;267(31):22414-20.
2',3'-Dideoxy-3'-thiacytidine (cis-(+/-)-SddC) was found to have potent activity against hepatitis B virus and human immunodeficiency viruses in culture. Recent studies by us identified (-)-SddC as the stereoisomer responsible for the antiviral effect and showed that the cytotoxicity was mainly caused by (+)-SddC. Metabolism studies showed that these drugs were converted to their monophosphates, diphosphates, and triphosphates. The enzyme responsible for the formation of monophosphates was identified to be cytoplasmic deoxycytidine kinase in CEM cells. Uptake studies showed that the intracellular concentration of (-)-SddC and its metabolites was approximately 5-fold higher than that of (+)-SddC metabolites. (-)-SddCTP was more potent than (+)-SddCTP in inhibiting hepatitis B virus replication; (+)- and (-)-SddCTP exhibited minimal inhibition on polymerases alpha and delta, more inhibition on beta, and strong inhibition on gamma. In all cases, (+)-SddCTP was found to be more inhibitory than (-)-SddCTP to all four polymerases. (+)-SddCMP competed with dCTP for incorporation into DNA by DNA polymerase gamma and beta and served as a chain terminator; however, similar incorporation was not detected using other polymerases. The selective inhibition of DNA synthesis in isolated mitochondria by (+)- and (-)-SddCTP suggests a stereospecificity on the mitochondrial uptake of deoxynucleoside triphosphates.
2',3'-二脱氧-3'-硫代胞苷(顺式-(+/-)-SddC)在细胞培养中被发现对乙型肝炎病毒和人类免疫缺陷病毒具有强效活性。我们最近的研究确定(-)-SddC为负责抗病毒作用的立体异构体,并表明细胞毒性主要由(+)-SddC引起。代谢研究表明,这些药物可转化为其一磷酸盐、二磷酸盐和三磷酸盐。在CEM细胞中,负责形成一磷酸盐的酶被确定为细胞质脱氧胞苷激酶。摄取研究表明,(-)-SddC及其代谢产物的细胞内浓度比(+)-SddC代谢产物高约5倍。(-)-SddCTP在抑制乙型肝炎病毒复制方面比(+)-SddCTP更有效;(+)-和(-)-SddCTP对α和δ聚合酶的抑制作用最小,对β聚合酶的抑制作用更大,对γ聚合酶的抑制作用很强。在所有情况下,发现(+)-SddCTP对所有四种聚合酶的抑制作用都比(-)-SddCTP更强。(+)-SddCMP与dCTP竞争,通过DNA聚合酶γ和β掺入DNA,并作为链终止剂;然而,使用其他聚合酶未检测到类似的掺入。(+)-和(-)-SddCTP对分离线粒体中DNA合成的选择性抑制表明,脱氧核苷三磷酸的线粒体摄取具有立体特异性。