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Rrp6p controls mRNA polyA tail length and its decoration with polyA binding proteins

机译:Rrp6p控制mRNa的多聚腺苷酸尾长度和其与多聚腺苷酸结合蛋白装饰

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摘要

PolyA (pA) tail binding proteins (PABPs) control mRNA polyadenylation, stability and translation. In a purified system, S. cerevisiae PABPs, Pab1p and Nab2p, are individually sufficient to provide normal pA tail length. However, it is unknown how this occurs in more complex environments. Here we find that the nuclear exosome subunit Rrp6p counteracts the in vitro and in vivo extension of mature pA tails by the non-canonical pA polymerase Trf4p. Moreover, PABP loading onto nascent pA tails is controlled by Rrp6p; while Pab1p is the major PABP, Nab2p only associates in the absence of Rrp6p. This is because Rrp6p can interact with Nab2p and displace it from pA tails, potentially leading to RNA turnover as evidenced for certain pre-mRNAs. We suggest that a nuclear mRNP surveillance step involves targeting of Rrp6p by Nab2p-bound pA-tailed RNPs and that pre-mRNA abundance is regulated at this level.
机译:Polya(PA)尾粘合蛋白(PABPS)对照MRNA多腺苷酸化,稳定性和翻译。在纯化的系统中,S.Cerevisiae Pabps,PAB1P和NaB2P是单独的,足以提供正常的PA尾长。但是,它是未知在更复杂的环境中发生这种情况。在这里,我们发现核外虫组亚单位RRP6P通过非规范PA聚合酶TRF4P抵消了成熟PA尾部的体外和体内延伸。此外,PABP加载到Nascent Pa尾部由RRP6P控制;虽然PAB1P是主要的PABP,但在没有RRP6P的情况下,NAB2P只有员工。这是因为RRP6P可以与NAB2P进行交互并从PA尾部取出它,可能导致RNA换档,这是针对某些前MRNA的证明。我们建议核MRNP监测步骤涉及通过NAB2P-结合的PA尾RNP靶向RRP6P,并且在该水平上监管前mRNA丰度。

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