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Structures of the T. brucei kRNA editing factor MRB1590 reveal unique RNA-binding pore motif contained within an ABC-ATPase fold

机译:布鲁氏杆菌kRNA编辑因子MRB1590的结构揭示了ABC-ATPase折叠中包含的独特的RNA结合孔基序

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摘要

Kinetoplastid RNA (kRNA) editing is a process that creates translatable mitochondrial mRNA transcripts from cryptogene encoded RNAs and is unique for kinetoplastids, such as Trypanosoma brucei. In addition to the catalytic 20S editosome, multiple accessory proteins are required for this conversion. Recently, the multiprotein mitochondrial RNA binding complex 1 (MRB1) has emerged as a key player in this process. MRB1 consists of six core proteins but makes dynamic interactions with additional accessory proteins. Here we describe the characterization of one such factor, the 72 kDa MRB1590 protein. In vivo experiments indicate a role for MRB1590 in editing mitochondrial mRNA transcripts, in particular the transcript encoding the ATP synthase subunit 6 (A6). Structural studies show that MRB1590 is dimeric and contains a central ABC-ATPase fold embedded between novel N- and C-terminal regions. The N-terminal domains combine to create a basic pore and biochemical studies indicate residues in this region participate in RNA binding. Structures capturing distinct MRB1590 conformations reveal that the RNA binding pore adopts closed and open states, with the latter able to accommodate RNA. Based on these findings, implications for MRB1590 function are discussed.
机译:动素体RNA(kRNA)编辑是从密码基因编码的RNA创建可翻译的线粒体mRNA转录物的过程,并且对于动体素(例如布鲁氏锥虫)是独特的。除了催化20S编辑体之外,这种转化还需要多种辅助蛋白。最近,多蛋白线粒体RNA结合复合物1(MRB1)已成为该过程中的关键角色。 MRB1由六个核心蛋白组成,但与其他辅助蛋白进行动态相互作用。在这里,我们描述了一种这样的因子,即72 kDa MRB1590蛋白的表征。体内实验表明MRB1590在编辑线粒体mRNA转录本,尤其是编码ATP合酶亚基6(A6)的转录本中的作用。结构研究表明,MRB1590是二聚体,并且在新的N端和C端区域之间包含一个中央ABC-ATPase折叠。 N末端域结合在一起形成一个基本的孔,生化研究表明该区域的残基参与RNA结合。捕获截然不同的MRB1590构象的结构表明,RNA结合孔呈封闭和开放状态,后者能够容纳RNA。基于这些发现,讨论了对MRB1590功能的影响。

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