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Crystal structure of human polynucleotide phosphorylase: insights into its domain function in RNA binding and degradation

机译:人多核苷酸磷酸化酶的晶体结构:洞察其在RNA结合和降解中的功能

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Human polynucleotide phosphorylase (hPNPase) is a 3'-to-5' exoribonuclease that degrades specific mRNA and miRNA, and imports RNA into mitochondria, and thus regulates diverse physiological processes, including cellular senescence and homeostasis. However, the RNA-processing mechanism by hPNPase, particularly how RNA is bound via its various domains, remains obscure. Here, we report the crystal structure of an S1 domain-truncated hPNPase at a resolution of 2.1 A. The trimeric hPNPase has a hexameric ring-like structure formed by six RNase PH domains, capped with a trimeric KH pore. Our biochemical and mutagenesis studies suggest that the S1 domain is not critical for RNA binding, and conversely, that the conserved GXXG motif in the KH domain directly participates in RNA binding in hPNPase. Our studies thus provide structural and functional insights into hPNPase, which uses a KH pore to trap a long RNA 3' tail that is further delivered into an RNase PH channel for the degradation process. Structural RNA with short 3' tails are, on the other hand, transported but not digested by hPNPase.
机译:人多核苷酸磷酸化酶(hPNPase)是3'至5'外切核糖核酸酶,可降解特定的mRNA和miRNA,并将RNA导入线粒体,从而调节多种生理过程,包括细胞衰老和体内平衡。然而,由hPNPase进行的RNA加工机制,尤其是RNA如何通过其各个结构域结合,仍然不清楚。在这里,我们报告了一个S1域被截断的hPNPase的晶体结构,分辨率为2.1A。三聚体hPNPase具有由六个RNase PH域形成的六聚体环状结构,并被一个三聚体KH孔覆盖。我们的生化和诱变研究表明,S1域对于RNA结合不是关键,相反,KH域中的保守GXXG基序直接参与hPNPase中的RNA结合。因此,我们的研究为hPNPase提供了结构和功能方面的见解,hPNPase使用KH孔捕获长的RNA 3'尾巴,该尾巴被进一步递送至RNase PH通道进行降解。另一方面,具有短3'尾巴的结构RNA被hPNPase转运但未被其消化。

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