Chen Jui-Hui, Gong Bo, Bevilacqua Philip C, Carey Paul R, Golden Barbara L
Department of Biochemistry, Purdue University, 175 South University Street, West Lafayette, Indiana 47907, USA.
Biochemistry. 2009 Feb 24;48(7):1498-507. doi: 10.1021/bi8020108.
The HDV ribozyme self-cleaves by a chemical mechanism involving general acid-base catalysis to generate 2',3'-cyclic phosphate and 5'-hydroxyl termini. Biochemical studies from several laboratories have implicated C75 as the general acid and hydrated magnesium as the general base. We have previously shown that C75 has a pK(a) shifted >2 pH units toward neutrality [Gong, B., Chen, J. H., Chase, E., Chadalavada, D. M., Yajima, R., Golden, B. L., Bevilacqua, P. C., and Carey, P. R. (2007) J. Am. Chem. Soc. 129, 13335-13342], while in crystal structures, it is well-positioned for proton transfer. However, no evidence for a hydrated magnesium poised to serve as a general base in the reaction has been observed in high-resolution crystal structures of various reaction states and mutants. Herein, we use solution kinetic experiments and parallel Raman crystallographic studies to examine the effects of pH on the rate and Mg(2+) binding properties of wild-type and 7-deazaguanosine mutants of the HDV ribozyme. These data suggest that a previously unobserved hydrated magnesium ion interacts with N7 of the cleavage site G.U wobble base pair. Integrating this metal ion binding site with the available crystal structures provides a new three-dimensional model for the active site of the ribozyme that accommodates all available biochemical data and appears competent for catalysis. The position of this metal is consistent with a role of a magnesium-bound hydroxide as a general base as dictated by biochemical data.
丁型肝炎病毒核酶通过一种涉及广义酸碱催化的化学机制进行自我切割,生成2',3'-环磷酸酯和5'-羟基末端。多个实验室的生化研究表明,C75作为广义酸,水合镁作为广义碱。我们之前已经表明,C75的pK(a)向中性方向移动了超过2个pH单位[龚,B.,陈,J. H.,蔡斯,E.,查达拉萨瓦达,D. M.,矢岛,R.,戈尔登,B. L.,贝维拉夸,P. C.,和凯里,P. R.(2007年)《美国化学会志》129,13335 - 13342],而在晶体结构中,它处于质子转移的有利位置。然而,在各种反应状态和突变体的高分辨率晶体结构中,尚未观察到有准备作为反应中广义碱的水合镁的证据。在此,我们使用溶液动力学实验和平行拉曼晶体学研究来考察pH对丁型肝炎病毒核酶野生型和7 - 脱氮鸟苷突变体的速率和Mg(2+)结合特性的影响。这些数据表明,一个先前未观察到的水合镁离子与切割位点G.U摆动碱基对的N7相互作用。将这个金属离子结合位点与现有的晶体结构相结合,为核酶的活性位点提供了一个新的三维模型,该模型容纳了所有可用的生化数据,并且似乎具备催化能力。这种金属的位置与生化数据所表明的镁结合氢氧化物作为广义碱的作用一致。