Swift Robert V, Durrant Jacob, Amaro Rommie E, McCammon J Andrew
Department of Chemistry and Biochemistry, NSF Center for Theoretical Biological Physics, University of California at San Diego, La Jolla, California 92093-0365, USA.
Biochemistry. 2009 Feb 3;48(4):709-19. doi: 10.1021/bi8018114.
Members of the genus Trypanosoma, which include the pathogenic species Trypanosoma brucei and Trypanosoma cruzi, edit their post-transcriptional mitochondrial RNA via a multiprotein complex called the editosome. In T. brucei, the RNA is nicked prior to uridylate insertion and deletion. Following editing, nicked RNA is religated by one of two RNA-editing ligases (TbREL). This study describes a recent 70 ns molecular dynamics simulation of TbREL1, an ATP-dependent RNA-editing ligase of the nucleotidyltransferase superfamily that is required for the survival of T. brucei insect and bloodstream forms. In this work, a model of TbREL1 in complex with its full double-stranded RNA (dsRNA) substrate is created on the basis of the homologous relation between TbREL1 and T4 Rnl2. The simulation captures TbREL1 dynamics in the state immediately preceding RNA ligation, providing insights into the functional dynamics and catalytic mechanism of the kinetoplastid ligation reaction. Important features of RNA binding and specificity are revealed for kinetoplastid ligases and the broader nucleotidyltransferase superfamily.
锥虫属的成员,包括致病物种布氏锥虫和克氏锥虫,通过一种称为编辑体的多蛋白复合物对转录后的线粒体RNA进行编辑。在布氏锥虫中,RNA在尿苷酸插入和缺失之前被切割。编辑后,切割的RNA由两种RNA编辑连接酶(TbREL)之一重新连接。本研究描述了最近对TbREL1进行的70纳秒分子动力学模拟,TbREL1是核苷酸转移酶超家族的一种依赖ATP的RNA编辑连接酶,是布氏锥虫昆虫型和血液型生存所必需的。在这项工作中,基于TbREL1与T4 Rnl2之间的同源关系,构建了TbREL1与其完整双链RNA(dsRNA)底物复合物的模型。该模拟捕捉了RNA连接前状态下TbREL1的动力学,为动质体连接反应的功能动力学和催化机制提供了见解。揭示了动质体连接酶和更广泛的核苷酸转移酶超家族在RNA结合和特异性方面的重要特征。