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PAPD5, a noncanonical poly(A) polymerase with an unusual RNA-binding motif.

机译:PAPD5,一种非常规的具有非常规RNA结合基序的poly(A)聚合酶。

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PAPD5 is one of the seven members of the family of noncanonical poly(A) polymerases in human cells. PAPD5 was shown to polyadenylate aberrant pre-ribosomal RNAs in vivo, similar to degradation-mediating polyadenylation by the noncanonical poly(A) polymerase Trf4p in yeast. PAPD5 has been reported to be also involved in the uridylation-dependent degradation of histone mRNAs. To test whether PAPD5 indeed catalyzes adenylation as well as uridylation of RNA substrates, we analyzed the in vitro properties of recombinant PAPD5 expressed in mammalian cells as well as in bacteria. Our results show that PAPD5 catalyzes the polyadenylation of different types of RNA substrates in vitro. Interestingly, PAPD5 is active without a protein cofactor, whereas its yeast homolog Trf4p is the catalytic subunit of a bipartite poly(A) polymerase in which a separate RNA-binding subunit is needed for activity. In contrast to the yeast protein, the C terminus of PAPD5 contains a stretch of basic amino acids that is involved in binding the RNA substrate.
机译:PAPD5是人细胞中非规范聚(A)聚合酶家族的七个成员之一。已显示PAPD5在体内会聚腺苷酸化异常的核糖体前RNA,类似于酵母中非规范性poly(A)聚合酶Trf4p介导的降解介导的聚腺苷酸化。据报道,PAPD5也参与了依赖尿嘧啶的组蛋白mRNA降解。为了测试PAPD5是否确实催化RNA底物的腺苷酸化和尿苷化,我们分析了在哺乳动物细胞和细菌中表达的重组PAPD5的体外特性。我们的结果表明,PAPD5在体外催化不同类型RNA底物的聚腺苷酸化。有趣的是,PAPD5在没有蛋白质辅因子的情况下是有活性的,而其酵母同系物Trf4p是二聚酶(A)聚合酶的催化亚基,其中需要单独的RNA结合亚基才能发挥活性。与酵母蛋白质相反,PAPD5的C末端包含一段碱性氨基酸,参与结合RNA底物。

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