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Crystal structure of archaeal ribonuclease P protein Ph1771p from Pyrococcus horikoshii OT3: An archaeal homolog of eukaryotic ribonuclease P protein Rpp29

机译:霍氏热球菌OT3古细菌核糖核酸酶P蛋白Ph1771p的晶体结构:真核生物核糖核酸酶P蛋白Rpp29的古细菌同源物

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摘要

Ribonuclease P (RNase P) is the endonuclease responsible for the removal of 5′ leader sequences from tRNA precursors. The crystal structure of an archaeal RNase P protein, Ph1771p (residues 36–127) from hyperthermophilic archaeon Pyrococcus horikoshii OT3 was determined at 2.0 Å resolution by X-ray crystallography. The structure is composed of four helices (α1–α4) and a six-stranded antiparallel β-sheet (β1–β6) with a protruding β-strand (β7) at the C-terminal region. The strand β7 forms an antiparallel β-sheet by interacting with strand β4 in a symmetry-related molecule, suggesting that strands β4 and β7 could be involved in protein-protein interactions with other RNase P proteins. Structural comparison showed that the β-barrel structure of Ph1771p has a topological resemblance to those of Staphylococcus aureus translational regulator Hfq and Haloarcula marismortui ribosomal protein L21E, suggesting that these RNA binding proteins have a common ancestor and then diverged to specifically bind to their cognate RNAs. The structure analysis as well as structural comparison suggested two possible RNA binding sites in Ph1771p, one being a concave surface formed by terminal α-helices (α1–α4) and β-strand β6, where positively charged residues are clustered. A second possible RNA binding site is at a loop region connecting strands β2 and β3, where conserved hydrophilic residues are exposed to the solvent and interact specifically with sulfate ion. These two potential sites for RNA binding are located in close proximity. The crystal structure of Ph1771p provides insight into the structure and function relationships of archaeal and eukaryotic RNase P.
机译:核糖核酸酶P(RNase P)是负责从tRNA前体中去除5'前导序列的核酸内切酶。通过X射线晶体学测定了超嗜热古生热球菌OT3的古细菌RNase P蛋白Ph1771p(残基36-127)的晶体结构。该结构由四个螺旋(α1-α4)和六链反平行β-折叠(β1-β6)组成,C端区域具有突出的β-链(β7)。 β7链通过与对称相关分子中的β4链相互作用而形成反平行的β-折叠,这表明β4和β7链可能与其他RNase P蛋白发生蛋白质-蛋白质相互作用。结构比较表明,Ph1771p的β桶结构与金黄色葡萄球菌翻译调节子Hfq和Haloarcula marismortui核糖体蛋白L21E具有相似的拓扑结构,这表明这些RNA结合蛋白具有共同的祖先,然后分化为与其同源RNA特异性结合。 。结构分析和结构比较表明,Ph1771p中可能存在两个RNA结合位点,一个是末端α-螺旋(α1-α4)和β-链β6形成的凹面,其中带正电荷的残基聚集在一起。第二个可能的RNA结合位点位于连接链β2和β3的环区域,其中保守的亲水残基暴露于溶剂并与硫酸根离子特异性相互作用。这两个潜在的RNA结合位点非常靠近。 Ph1771p的晶体结构提供了对古细菌和真核RNase P的结构和功能关系的深入了解。

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