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利巴韦林和病毒唑核苷经腺苷激酶和胞质5'-核苷酸酶II磷酸化:对红细胞中利巴韦林代谢的影响。

Phosphorylation of ribavirin and viramidine by adenosine kinase and cytosolic 5'-nucleotidase II: Implications for ribavirin metabolism in erythrocytes.

作者信息

Wu Jim Zhen, Larson Gary, Walker Heli, Shim Jae Hoon, Hong Zhi

机构信息

Drug Discovery, Valeant Pharmaceuticals International, 3300 Hyland Avenue, Costa Mesa, CA 92626, USA.

出版信息

Antimicrob Agents Chemother. 2005 Jun;49(6):2164-71. doi: 10.1128/AAC.49.6.2164-2171.2005.

Abstract

Many nucleoside analog drugs, such as ribavirin and viramidine, are activated or metabolized in vivo through 5'-phosphorylation. In this report, we determined the steady-state kinetic parameters for 5'-monophosphorylation of ribavirin and viramidine by adenosine kinase. The apparent Km for ribavirin is 540 microM, and k(cat) is 1.8 min-1. Its catalytic efficiency of 3.3 x 10(-3) min-1 . microM-1 is 1,200-fold lower than that of adenosine. In contrast to the common belief that ribavirin is exclusively phosphorylated by adenosine kinase, cytosolic 5'-nucleotidase II was found to catalyze ribavirin phosphorylation in vitro. The reaction is optimally stimulated by the physiological concentration of ATP or 2,3-bisphosphoglycerate. In phosphate-buffered saline plus ATP and 2,3-bisphosphoglycerate, the apparent Km for ribavirin is 88 microM, and k(cat) is 4.0 min-1. These findings suggest that cytosolic 5'-nucleotidase II may be involved in ribavirin phosphorylation in vivo. Like ribavirin, viramidine was found to be phosphorylated by either adenosine kinase or cytosolic 5'-nucleotidase II, albeit with a much lower activity. The catalytic efficiency for viramidine phosphorylation is 10- to 330-fold lower than that of ribavirin, suggesting that other nucleoside kinase(s) may be involved in viramidine phosphorylation in vivo. Both ribavirin and viramidine are not phosphorylated by deoxycytidine kinase and uridine-cytidine kinase. The coincidence of presence of high concentrated 2,3-bisphosphoglycerate in erythrocytes suggests that cytosolic 5'-nucleotidase II could play an important role in phosphorylating ribavirin and contribute to anabolism of ribavirin triphosphate in erythrocytes. Elucidation of ribavirin and viramidine phosphorylation mechanism should shed light on their in vivo metabolism, especially the ribavirin-induced hemolytic anemia in erythrocytes.

摘要

许多核苷类似物药物,如利巴韦林和硝唑咪,在体内通过5'-磷酸化被激活或代谢。在本报告中,我们测定了腺苷激酶对利巴韦林和硝唑咪进行5'-单磷酸化的稳态动力学参数。利巴韦林的表观Km为540微摩尔,k(cat)为1.8分钟-1。其3.3×10(-3)分钟-1·微摩尔-1的催化效率比腺苷低1200倍。与普遍认为利巴韦林仅由腺苷激酶磷酸化的观点相反,发现胞质5'-核苷酸酶II在体外催化利巴韦林磷酸化。该反应受到生理浓度的ATP或2,3-二磷酸甘油酸的最佳刺激。在含有ATP和2,3-二磷酸甘油酸的磷酸盐缓冲盐溶液中,利巴韦林的表观Km为88微摩尔,k(cat)为4.0分钟-1。这些发现表明胞质5'-核苷酸酶II可能参与体内利巴韦林的磷酸化。与利巴韦林一样,发现硝唑咪可被腺苷激酶或胞质5'-核苷酸酶II磷酸化,尽管活性要低得多。硝唑咪磷酸化的催化效率比利巴韦林低10至330倍,这表明体内硝唑咪的磷酸化可能涉及其他核苷激酶。利巴韦林和硝唑咪都不会被脱氧胞苷激酶和尿苷-胞苷激酶磷酸化。红细胞中高浓度2,3-二磷酸甘油酸的同时存在表明,胞质5'-核苷酸酶II在利巴韦林磷酸化中可能起重要作用,并有助于红细胞中利巴韦林三磷酸的合成代谢。阐明利巴韦林和硝唑咪的磷酸化机制应有助于了解它们的体内代谢,尤其是利巴韦林诱导的红细胞溶血性贫血。

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