Stuart Kenneth D, Schnaufer Achim, Ernst Nancy Lewis, Panigrahi Aswini K
Seattle Biomedical Research Institute, 307 Westlake Avenue North, Suite 500, Seattle, WA 98109, USA.
Trends Biochem Sci. 2005 Feb;30(2):97-105. doi: 10.1016/j.tibs.2004.12.006.
Most mitochondrial mRNAs in kinetoplastids require editing, that is, the posttranscriptional insertion and deletion of uridine nucleotides that are specified by guide RNAs and catalyzed by multiprotein complexes. Recent studies have identified many of the proteins in these complexes, in addition to some of their functions and interactions. Although much remains unknown, a picture of highly organized complexes is emerging that shows that the complex that catalyzes the central steps of editing is partitioned into distinct insertion and deletion editing subcomplexes. These subcomplexes coordinate hundreds of ordered catalytic steps that function to produce a single mature mRNA. The dynamic processes, which might entail interactions among multiprotein complexes and changes in their composition and conformation, remain to be elucidated.
动质体中的大多数线粒体mRNA都需要编辑,也就是说,要在转录后插入和删除尿苷酸,这些过程由引导RNA指定,并由多蛋白复合体催化。最近的研究已经鉴定出这些复合体中的许多蛋白质,以及它们的一些功能和相互作用。尽管仍有许多未知之处,但一幅高度组织化的复合体图景正在浮现,这表明催化编辑核心步骤的复合体被划分为不同的插入和删除编辑亚复合体。这些亚复合体协调数百个有序的催化步骤,以产生单个成熟的mRNA。这些动态过程,可能涉及多蛋白复合体之间的相互作用以及它们的组成和构象变化,仍有待阐明。