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首页> 外文期刊>Molecular and Cellular Biology >Defining the Domains of Human Polynucleotide Phosphorylase (hPNPaseOLD-35) Mediating Cellular Senescence
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Defining the Domains of Human Polynucleotide Phosphorylase (hPNPaseOLD-35) Mediating Cellular Senescence

机译:定义人类多核苷酸磷酸化酶(hPNPaseOLD-35)介导细胞衰老的域。

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To fully comprehend cellular senescence, identification of relevant genes involved in this process is mandatory. Human polynucleotide phosphorylase (hPNPaseOLD-35), an evolutionarily conserved 3′, 5′ exoribonuclease mediating mRNA degradation, was first identified as a predominantly mitochondrial protein overexpressed during terminal differentiation and senescence. Overexpression of hPNPaseOLD-35 in human melanoma cells and melanocytes induces distinctive changes associated with senescence, potentially mediated by direct degradation of c-myc mRNA by this enzyme. hPNPaseOLD-35 contains two RNase PH (RPH) domains, one PNPase domain, and two RNA binding domains. Using deletion mutation analysis in combination with biochemical and molecular analyses we now demonstrate that the presence of either one of the two RPH domains conferred similar functional activity as the full-length protein, whereas a deletion mutant containing only the RNA binding domains was devoid of activity. Moreover, either one of the two RPH domains induced the morphological, biochemical, and gene expression changes associated with senescence, including degradation of c-myc mRNA. Subcellular distribution confirmed hPNPaseOLD-35 to be localized both in mitochondria and the cytoplasm. The present study elucidates how a predominantly mitochondrial protein, via its localization in both mitochondria and cytoplasm, is able to target a specific cytoplasmic mRNA, c-myc, for degradation and through this process induce cellular senescence.
机译:为了充分理解细胞衰老,必须识别参与此过程的相关基因。人类多核苷酸磷酸化酶(hPNPase OLD-35 )是一种进化保守的3',5'外核糖核酸酶,介导mRNA降解,首先被鉴定为主要是线粒体蛋白,在终末分化和衰老过程中过表达。 hPNPase OLD-35 在人黑素瘤细胞和黑素细胞中的过量表达诱导了与衰老相关的独特变化,可能是由该酶直接降解c- myc mRNA介导的。 hPNPase OLD-35 包含两个RNase PH(RPH)域,一个PNPase域和两个RNA结合域。现在,结合使用缺失突变分析和生物化学和分子分析,我们证明了两个RPH结构域之一的存在赋予了与全长蛋白质相似的功能活性,而仅包含RNA结合结构域的缺失突变体则没有活性。此外,两个RPH结构域之一都诱导了与衰老相关的形态,生化和基因表达变化,包括c- myc mRNA的降解。亚细胞分布证实hPNPase OLD-35 位于线粒体和细胞质中。本研究阐明了主要是线粒体的蛋白质如何通过其在线粒体和细胞质中的定位,能够靶向特定的细胞质mRNA c- myc 进行降解,并通过该过程诱导细胞衰老。

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