Lewis R A, Link L
Department of Biochemistry, University of Nevada-Reno 89557.
Biochem Pharmacol. 1989 Jun 15;38(12):2001-6. doi: 10.1016/0006-2952(89)90500-5.
Extracts of mitochondria isolated from bovine liver were shown to phosphorylate araG, forming araGMP as the sole product. When other nucleosides were used as competitors with araG as the substrate for phosphorylation, deoxycytidine, deoxythymidine and guanosine were not significantly inhibitory. However, the phosphorylation of araG was blocked by deoxyguanosine, deoxyadenosine and deoxyinosine. Deoxyguanosine was shown to be a competitive inhibitor of araG phosphorylation (apparent Ki for deoxyguanosine = 9 microM; apparent Km for araG = 66 microM). Likewise, araG was determined to be a competitive inhibitor of mitochondrial deoxyguanosine kinase activity (apparent Km for deoxyguanosine = 16 microM; apparent Ki for araG = 55 microM). These data suggest that the two nucleosides were phosphorylated by the same enzyme. Disc gel electrophoresis showed that the phosphorylating activity for araG migrated with deoxyguanosine kinase activity. The pH profiles of the araG and deoxyguanosine kinase activities were dissimilar. The optimum pH for deoxyguanosine kinase was 5.5; for araG kinase, it was 8.0. Collectively, these data suggest that araG is phosphorylated by mitochondrial deoxyguanosine kinase; however, separate forms of the enzyme or different reaction conditions may be involved in the optimal activities of the two catalytic events.
从牛肝中分离出的线粒体提取物被证明可使阿糖鸟苷磷酸化,形成阿糖鸟苷一磷酸(araGMP)作为唯一产物。当使用其他核苷作为与阿糖鸟苷竞争的磷酸化底物时,脱氧胞苷、脱氧胸苷和鸟苷并无明显抑制作用。然而,阿糖鸟苷的磷酸化被脱氧鸟苷、脱氧腺苷和脱氧肌苷阻断。脱氧鸟苷被证明是阿糖鸟苷磷酸化的竞争性抑制剂(脱氧鸟苷的表观抑制常数Ki = 9微摩尔;阿糖鸟苷的表观米氏常数Km = 66微摩尔)。同样,阿糖鸟苷被确定为线粒体脱氧鸟苷激酶活性的竞争性抑制剂(脱氧鸟苷的表观米氏常数Km = 16微摩尔;阿糖鸟苷的表观抑制常数Ki = 55微摩尔)。这些数据表明这两种核苷由同一种酶磷酸化。圆盘凝胶电泳显示,阿糖鸟苷的磷酸化活性与脱氧鸟苷激酶活性一同迁移。阿糖鸟苷和脱氧鸟苷激酶活性的pH曲线不同。脱氧鸟苷激酶的最适pH为5.5;阿糖鸟苷激酶的最适pH为8.0。总体而言,这些数据表明阿糖鸟苷由线粒体脱氧鸟苷激酶磷酸化;然而,两种催化反应的最佳活性可能涉及该酶的不同形式或不同反应条件。