Gu Huiqiong, Yoshinari Shigeo, Ghosh Raka, Ignatochkina Anna V, Gollnick Paul D, Murakami Katsuhiko S, Ho C Kiong
Department of Biological Sciences, State University of New York, Buffalo, NY 14260, USA.
Department of Biochemistry and Molecular Biology, Pennsylvania State University, University Park, PA 16802, USA.
Nucleic Acids Res. 2016 Mar 18;44(5):2337-47. doi: 10.1093/nar/gkw094. Epub 2016 Feb 20.
An ATP-dependent RNA ligase from Methanobacterium thermoautotrophicum (MthRnl) catalyzes intramolecular ligation of single-stranded RNA to form a closed circular RNA via covalent ligase-AMP and RNA-adenylylate intermediate. Here, we report the X-ray crystal structures of an MthRnl•ATP complex as well as the covalent MthRnl-AMP intermediate. We also performed structure-guided mutational analysis to survey the functions of 36 residues in three component steps of the ligation pathway including ligase-adenylylation (step 1), RNA adenylylation (step 2) and phosphodiester bond synthesis (step 3). Kinetic analysis underscored the importance of motif 1a loop structure in promoting phosphodiester bond synthesis. Alanine substitutions of Thr117 or Arg118 favor the reverse step 2 reaction to deadenylate the 5'-AMP from the RNA-adenylate, thereby inhibiting step 3 reaction. Tyr159, Phe281 and Glu285, which are conserved among archaeal ATP-dependent RNA ligases and are situated on the surface of the enzyme, are required for RNA binding. We propose an RNA binding interface of the MthRnl based on the mutational studies and two sulfate ions that co-crystallized at the active site cleft in the MthRnl-AMP complex.
嗜热自养甲烷杆菌(MthRnl)的一种依赖ATP的RNA连接酶催化单链RNA的分子内连接,通过共价连接酶-AMP和RNA-腺苷酸中间体形成闭环RNA。在此,我们报告了MthRnl•ATP复合物以及共价MthRnl-AMP中间体的X射线晶体结构。我们还进行了结构导向的突变分析,以研究连接途径三个组成步骤中36个残基的功能,包括连接酶腺苷酸化(步骤1)、RNA腺苷酸化(步骤2)和磷酸二酯键合成(步骤3)。动力学分析强调了基序1a环结构在促进磷酸二酯键合成中的重要性。Thr117或Arg118的丙氨酸取代有利于反向步骤2反应,使RNA-腺苷酸的5'-AMP去腺苷酸化,从而抑制步骤3反应。在古菌依赖ATP的RNA连接酶中保守且位于酶表面的Tyr159、Phe281和Glu285是RNA结合所必需的。基于突变研究以及在MthRnl-AMP复合物活性位点裂隙中共结晶的两个硫酸根离子,我们提出了MthRnl的RNA结合界面。