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Crystal structure of human Rpp20/Rpp25 reveals quaternary level adaptation of the Alba scaffold as structural basis for single-stranded RNA binding

机译:人类Rpp20 / Rpp25的晶体结构揭示了Alba支架的四级水平适应性作为单链RNA结合的结构基础

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摘要

RNase P catalyzes the removal of 5′ leaders of tRNA precursors and its central catalytic RNA subunit is highly conserved across all domains of life. In eukaryotes, RNase P and RNase MRP, a closely related ribonucleoprotein enzyme, share several of the same protein subunits, contain a similar catalytic RNA core, and exhibit structural features that do not exist in their bacterial or archaeal counterparts. A unique feature of eukaryotic RNase P/MRP is the presence of two relatively long and unpaired internal loops within the P3 region of their RNA subunit bound by a heterodimeric protein complex, Rpp20/Rpp25. Here we present a crystal structure of the human Rpp20/Rpp25 heterodimer and we propose, using comparative structural analyses, that the evolutionary divergence of the single-stranded and helical nucleic acid binding specificities of eukaryotic Rpp20/Rpp25 and their related archaeal Alba chromatin protein dimers, respectively, originate primarily from quaternary level differences observed in their heterodimerization interface. Our work provides structural insights into how the archaeal Alba protein scaffold was adapted evolutionarily for incorporation into several functionally-independent eukaryotic ribonucleoprotein complexes.
机译:RNase P催化tRNA前体5'前导序列的去除,其中心催化RNA亚基在生命的所有域中都高度保守。在真核生物中,RNase P和RNase MRP是一种密切相关的核糖核蛋白酶,共享几个相同的蛋白质亚基,包含相似的催化RNA核心,并展现出在细菌或古细菌对应物中不存在的结构特征。真核RNase P / MRP的独特之处在于在其RNA亚基的P3区域中,有两个相对较长且不成对的内部环被异二聚体蛋白复合体Rpp20 / Rpp25结合。在这里,我们介绍了人Rpp20 / Rpp25异源二聚体的晶体结构,并通过比较结构分析,我们提出了真核Rpp20 / Rpp25及其相关的古细菌Alba染色质蛋白二聚体的单链和螺旋核酸结合特异性的进化差异。分别主要来自在它们的异二聚化界面中观察到的四级能级差异。我们的工作提供了结构上的见解,以了解如何逐步改变古细菌Alba蛋白支架,以使其整合到几种功能独立的真核生物核糖核蛋白复合物中。

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