Soulière Marie F, Perreault Jean-Pierre, Bisaillon Martin
Département de Biochimie, RNA Group, Faculté de Médecine, Université de Sherbrooke, Sherbrooke, Québec J1H 5N4, Canada.
Nucleic Acids Res. 2008 Feb;36(2):451-61. doi: 10.1093/nar/gkm1067. Epub 2007 Nov 26.
The Chlorella virus RNA triphosphatase (cvRTPase) is involved in the formation of the RNA cap structure found at the 5'-end of the viral mRNAs and requires magnesium ions to mediate its catalytic activity. To extend our studies on the role of metal ions in phosphohydrolysis, we have used a combination of fluorescence spectroscopy, circular dichroism, denaturation studies and thermodynamic analyses to monitor the binding of magnesium ions to the cvRTPase. Using these techniques, the thermodynamic forces responsible for the interaction of metal ions with an RNA triphosphatase were also evaluated for the first time. Our thermodynamic analyses indicate that the initial association of magnesium with the cvRTPase is dominated by a favorable entropic effect and is accompanied by the release of eight water molecules from the enzyme. Moreover, both fluorescence spectroscopy and circular dichroism assays indicated that minor conformational changes were occurring upon magnesium binding. Mutational studies were also performed and confirmed the importance of three specific glutamate residues located in the active site of the enzyme for the binding of magnesium ions. Finally, in contrast to the yeast RNA triphosphatase, we demonstrate that the binding of magnesium ions to the cvRTPase does not lead to the stabilization of the ground state binding of the RNA substrate. Based on the results of the present study, we hypothesize that the binding of magnesium ions induces local conformational perturbations in the active site residues that ultimately positions the lateral chains of critical amino acids involved in catalysis. Our results highlight fundamental differences in the role of magnesium ions in the phosphohydrolase reactions catalyzed by the cvRTPase and the closely related yeast RNA triphosphatase.
小球藻病毒RNA三磷酸酶(cvRTPase)参与病毒mRNA 5′端RNA帽结构的形成,并且需要镁离子来介导其催化活性。为了拓展我们对金属离子在磷酸水解中作用的研究,我们结合了荧光光谱法、圆二色性、变性研究和热力学分析来监测镁离子与cvRTPase的结合。利用这些技术,首次评估了负责金属离子与RNA三磷酸酶相互作用的热力学力。我们的热力学分析表明,镁与cvRTPase的初始结合主要由有利的熵效应主导,并伴随着从酶中释放出八个水分子。此外,荧光光谱法和圆二色性分析均表明,镁结合时发生了微小的构象变化。还进行了突变研究,证实了位于酶活性位点的三个特定谷氨酸残基对于镁离子结合的重要性。最后,与酵母RNA三磷酸酶不同,我们证明镁离子与cvRTPase的结合不会导致RNA底物基态结合的稳定。基于本研究的结果,我们推测镁离子的结合会在活性位点残基中诱导局部构象扰动,最终使参与催化的关键氨基酸的侧链定位。我们的结果突出了镁离子在cvRTPase和密切相关的酵母RNA三磷酸酶催化的磷酸水解反应中作用的根本差异。