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Structural and biochemical characterization of CRN-5 and Rrp46: an exosome component participating in apoptotic DNA degradation.

机译:CRN-5和Rrp46的结构和生化特征:参与凋亡DNA降解的外泌体成分。

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Rrp46 was first identified as a protein component of the eukaryotic exosome, a protein complex involved in 3' processing of RNA during RNA turnover and surveillance. The Rrp46 homolog, CRN-5, was subsequently characterized as a cell death-related nuclease, participating in DNA fragmentation during apoptosis in Caenorhabditis elegans. Here we report the crystal structures of CRN-5 and rice Rrp46 (oRrp46) at a resolution of 3.9 A and 2.0 A, respectively. We found that recombinant human Rrp46 (hRrp46), oRrp46, and CRN-5 are homodimers, and that endogenous hRrp46 and oRrp46 also form homodimers in a cellular environment, in addition to their association with a protein complex. Dimeric oRrp46 had both phosphorolytic RNase and hydrolytic DNase activities, whereas hRrp46 and CRN-5 bound to DNA without detectable nuclease activity. Site-directed mutagenesis in oRrp46 abolished either its DNase (E160Q) or RNase (K75E/Q76E) activities, confirming the critical importance of these residues in catalysis or substrate binding. Moreover, CRN-5 directly interacted with the apoptotic nuclease CRN-4 and enhanced the DNase activity of CRN-4, suggesting that CRN-5 cooperates with CRN-4 in apoptotic DNA degradation. Taken together all these results strongly suggest that Rrp46 forms a homodimer separately from exosome complexes and, depending on species, is either a structural or catalytic component of the machinery that cleaves DNA during apoptosis.
机译:Rrp46首先被鉴定为真核外泌体的蛋白质成分,该蛋白质复合体在RNA周转和监视过程中参与RNA 3'加工。 Rrp46同源物,CRN-5,随后被表征为细胞死亡相关的核酸酶,参与秀丽隐杆线虫细胞凋亡期间的DNA片段化。在这里,我们报告了CRN-5和水稻Rrp46(oRrp46)的晶体结构,分别为3.9 A和2.0A。我们发现重组人Rrp46(hRrp46),oRrp46和CRN-5是同型二聚体,内源性hRrp46和oRrp46除了与蛋白质复合物的缔合外,在细胞环境中也形成同型二聚体。二聚体oRrp46具有磷酸化RNase和水解DNase活性,而hRrp46和CRN-5与DNA结合而没有可检测的核酸酶活性。 oRrp46中的定点诱变消除了其DNase(E160Q)或RNase(K75E / Q76E)活性,从而证实了这些残基在催化或底物结合中的至关重要性。此外,CRN-5与凋亡核酸酶CRN-4直接相互作用并增强了CRN-4的DNase活性,这表明CRN-5与CRN-4协同作用于凋亡DNA降解。综合所有这些结果,有力地表明Rrp46与外泌体复合物分开形成同型二聚体,并且视物种而定,它是在凋亡过程中切割DNA的机制的结构或催化成分。

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