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Functional implication of archaeal homologues of human RNase P protein pair Pop5 and Rpp30

机译:人类RNase P蛋白对Pop5和Rpp30的古细菌同源物的功能意义

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摘要

PhoPop5 and PhoRpp30 in the hyperthermophilic archaeon Pyrococcus horikoshii, homologues of human ribonuclease P (RNase P) proteins hPop5 and Rpp30, respectively, fold into a heterotetramer [PhoRpp30-(PhoPop5)(2)-PhoRpp30], which plays a crucial role in the activation of RNase P RNA (PhopRNA). Here, we examined the functional implication of PhoPop5 and PhoRpp30 in the tetramer. Surface plasmon resonance (SPR) analysis revealed that the tetramer strongly interacts with an oligonucleotide including the nucleotide sequence of a stem-loop SL3 in PhopRNA. In contrast, PhoPop5 had markedly reduced affinity to SL3, whereas PhoRpp30 had little affinity to SL3. SPR studies of PhoPop5 mutants further revealed that the C-terminal helix (alpha 4) in PhoPop5 functions as a molecular recognition element for SL3. Moreover, gel filtration indicated that PhoRpp30 exists as a monomer, whereas PhoPop5 is an oligomer in solution, suggesting that PhoRpp30 assists PhoPop5 in attaining a functionally active conformation by shielding hydrophobic surfaces of PhoPop5. These results, together with available data, allow us to generate a structural and mechanistic model for the PhopRNA activation by PhoPop5 and PhoRpp30, in which the two C-terminal helices (alpha 4) of PhoPop5 in the tetramer whose formation is assisted by PhoRpp30 act as binding elements and bridge SL3 and SL16 in PhopRNA.
机译:人类核糖核酸酶P(RNase P)蛋白hPop5和Rpp30的同系物,在嗜热古生热球菌Phorococcus horikoshii中的PhoPop5和PhoRpp30折叠成异四聚体[PhoRpp30-(PhoPop5)(2)-PhoRpp30],在其中发挥重要作用激活RNase P RNA(PhopRNA)。在这里,我们检查了四聚体中PhoPop5和PhoRpp30的功能含义。表面等离子体共振(SPR)分析表明,四聚体与寡核苷酸强烈相互作用,该寡核苷酸包括PhopRNA中茎环SL3的核苷酸序列。相反,PhoPop5对SL3的亲和力明显降低,而PhoRpp30对SL3的亲和力很小。对PhoPop5突变体的SPR研究进一步表明,PhoPop5中的C末端螺旋(alpha 4)充当SL3的分子识别元件。此外,凝胶过滤表明PhoRpp30以单体形式存在,而PhoPop5是溶液中的低聚物,表明PhoRpp30通过屏蔽PhoPop5的疏水表面来协助PhoPop5获得功能活性构象。这些结果以及可用的数据,使我们能够生成PhoPop5和PhoRpp30激活PhopRNA的结构和机理模型,其中四聚体中PhoPop5的两个C端螺旋(α4)由PhoRpp30 act协助形成作为结合元件并在PhopRNA中桥接SL3和SL16。

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