Bougie Isabelle, Bisaillon Martin
Département de Biochimie, Faculté de Médecine, Université de Sherbrooke, Sherbrooke, Québec, Canada J1H 5N4.
Biochem J. 2006 Sep 15;398(3):557-67. doi: 10.1042/BJ20060198.
Paramecium bursaria chlorella virus, a large DNA virus that replicates in unicellular Chlorella-like algae, encodes an RNA triphosphatase which is involved in the synthesis of the RNA cap structure found at the 5' end of the viral mRNAs. The Chlorella virus RNA triphosphatase is the smallest member of the metal-dependent RNA triphosphatases that include enzymes from fungi, DNA viruses, protozoans and microsporidian parasites. In the present study, we investigated the ability of various vanadate oxoanions to inhibit the phosphohydrolase activity of the enzyme. Fluorescence spectroscopy and CD studies were used to directly monitor the binding of decavanadate to the enzyme. Moreover, competition assays show that decavanadate is a potent non-competitive inhibitor of the phosphohydrolase activity, and mutagenesis studies indicate that the binding of decavanadate does not involve amino acids located in the active site of the enzyme. In order to provide additional insight into the relationship between the enzyme structure and decavanadate binding, we correlated the effect of decavanadate binding on protein structure using both CD and guanidinium chloride-induced denaturation as structural indicators. Our data indicated that no significant modification of the overall protein architecture was occurring upon decavanadate binding. However, both fluorescence spectroscopy and CD experiments clearly revealed that the binding of decavanadate to the enzyme significantly decreased the structural stability of the enzyme. Taken together, these studies provide crucial insights into the inhibition of metal-dependent RNA triphosphatases by decavanadate.
草履虫小球藻病毒是一种在单细胞类小球藻中复制的大型DNA病毒,它编码一种RNA三磷酸酶,该酶参与病毒mRNA 5'端发现的RNA帽结构的合成。小球藻病毒RNA三磷酸酶是金属依赖性RNA三磷酸酶中最小的成员,这类酶包括来自真菌、DNA病毒、原生动物和微孢子虫寄生虫的酶。在本研究中,我们研究了各种钒酸根阴离子抑制该酶磷酸水解酶活性的能力。荧光光谱和圆二色性研究用于直接监测十钒酸盐与该酶的结合。此外,竞争试验表明十钒酸盐是磷酸水解酶活性的有效非竞争性抑制剂,诱变研究表明十钒酸盐的结合不涉及位于该酶活性位点的氨基酸。为了进一步深入了解该酶结构与十钒酸盐结合之间的关系,我们使用圆二色性和氯化胍诱导的变性作为结构指标,将十钒酸盐结合对蛋白质结构的影响进行了关联。我们的数据表明,十钒酸盐结合后蛋白质整体结构没有发生显著改变。然而,荧光光谱和圆二色性实验都清楚地表明,十钒酸盐与该酶的结合显著降低了该酶的结构稳定性。综上所述,这些研究为十钒酸盐对金属依赖性RNA三磷酸酶的抑制作用提供了关键的见解。