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Contributions of the two accessory subunits RNASEH2B and RNASEH2C to the activity and properties of the human RNase H2 complex

机译:RNASEH2B和RNASEH2C这两个辅助亚基对人RNase H2复合物的活性和特性的贡献

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摘要

Eukaryotic RNase H2 is a heterotrimeric enzyme. Here, we show that the biochemical composition and stoichiometry of the human RNase H2 complex is consistent with the properties previously deduced from genetic studies. The catalytic subunit of eukaryotic RNase H2, RNASEH2A, is well conserved and similar to the monomeric prokaryotic RNase HII. In contrast, the RNASEH2B and RNASEH2C subunits from human and Saccharomyces cerevisiae share very little homology, although they both form soluble B/C complexes that may serve as a nucleation site for the addition of RNASEH2A to form an active RNase H2, or for interactions with other proteins to support different functions. The RNASEH2B subunit has a PIP-box and confers PCNA binding to human RNase H2. Unlike Escherichia coli RNase HII, eukaryotic RNase H2 acts processively and hydrolyzes a variety of RNA/DNA hybrids with similar efficiencies, suggesting multiple cellular substrates. Moreover, of five analyzed mutations in human RNASEH2B and RNASEH2C linked to Aicardi-Goutières Syndrome (AGS), only one, R69W in the RNASEH2C protein, exhibits a significant reduction in specific activity, revealing a role for the C subunit in enzymatic activity. Near-normal activity of four AGS-related mutant enzymes was unexpected in light of their predicted impairment causing the AGS phenotype.
机译:真核RNase H2是异源三聚酶。在这里,我们显示人RNase H2复合物的生化组成和化学计量与先前从遗传研究中推导的特性一致。真核RNase H2的催化亚基RNASEH2A保守性很强,与单体原核RNase HII相似。相比之下,来自人和酿酒酵母的RNASEH2B和RNASEH2C亚基几乎没有同源性,尽管它们都形成可溶的B / C复合物,可作为添加RNASEH2A以形成活性RNase H2或与之相互作用的成核位点。其他支持不同功能的蛋白质。 RNASEH2B亚基具有一个PIP框,可赋予PCNA与人RNase H2的结合。与大肠杆菌RNase HII不同,真核RNase H2发挥作用,并以相似的效率水解多种RNA / DNA杂种,提示存在多种细胞底物。此外,在与爱卡迪-古德雷斯综合症(AGS)相关的人RNASEH2B和RNASEH2C的五个分析突变中,只有一个,即RNASEH2C蛋白中的R69W,比活性显着降低,揭示了C亚基在酶活性中的作用。鉴于其导致AGS表型的预期损伤,四种AGS相关突变酶的近乎正常的活性是出乎意料的。

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