Verri A, Priori G, Spadari S, Tondelli L, Focher F
Istituto di Genetica Biochimica ed Evoluzionistica, Consiglio Nazionale delle Ricerche, Pavia, Italy.
Biochem J. 1997 Nov 15;328 ( Pt 1)(Pt 1):317-20. doi: 10.1042/bj3280317.
Our discovery that Herpes virus thymidine kinase (TK) and cellular deoxycytidine kinase lack enantioselectivity, being able to phosphorylate both D- and L-enantiomers of the substrate, suggested the use of unnatural L-nucleoside analogues as antiviral drugs (Herpes, hepatitis and immunodeficiency viruses). Several L-nucleoside analogues have displayed a short-term cytotoxicity much lower than their corresponding D-counterpart. Since the delayed cytotoxicity of a drug often depends on its effects on mitochondrial metabolism, we have investigated the degree of enantioselectivity of human mitochondrial thymidine kinase (mt-TK). We demonstrate that mt-TK does not show an absolute enantioselectivity, being able to recognize, although with lower efficiency, the L-enantiomers of thymidine, deoxycytidine and modified deoxyuridines, such as (E)-5-(2-bromovinyl)-2'-deoxyuridine and 5-iodo-2'-deoxyuridine. Interestingly, the reported negative co-operativity of mt-TK phosphorylating beta-D-2'-deoxythymidine (D-Thd), disappears when the deoxyribose moiety has the inverted configuration, resulting in the preferential phosphorylation of d-Thd even in the presence of high concentrations of the L-enantiomer. This, coupled with the higher Km for beta-L-2'-deoxythymidine (L-Thd), makes mt-TK resistant to high concentrations of L-Thd and L-Thd analogues, minimizing the mitochondria-dependent delayed cytotoxicity that might be caused by the administration of L-nucleoside analogues as antivirals.
我们发现疱疹病毒胸苷激酶(TK)和细胞脱氧胞苷激酶缺乏对映体选择性,能够磷酸化底物的D-和L-对映体,这表明可将非天然L-核苷类似物用作抗病毒药物(用于疱疹病毒、肝炎病毒和免疫缺陷病毒)。几种L-核苷类似物显示出的短期细胞毒性远低于其相应的D-对映体。由于药物的延迟细胞毒性通常取决于其对线粒体代谢的影响,我们研究了人线粒体胸苷激酶(mt-TK)的对映体选择性程度。我们证明mt-TK没有表现出绝对的对映体选择性,尽管效率较低,但它能够识别胸苷、脱氧胞苷和修饰的脱氧尿苷的L-对映体,如(E)-5-(2-溴乙烯基)-2'-脱氧尿苷和5-碘-2'-脱氧尿苷。有趣的是,当脱氧核糖部分构型翻转时,mt-TK磷酸化β-D-2'-脱氧胸苷(D-Thd)时报道的负协同性消失,即使在存在高浓度L-对映体的情况下也导致d-Thd的优先磷酸化。这与β-L-2'-脱氧胸苷(L-Thd)的较高Km相结合,使得mt-TK对高浓度的L-Thd和L-Thd类似物具有抗性,从而将作为抗病毒药物施用L-核苷类似物可能引起的线粒体依赖性延迟细胞毒性降至最低。