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Crossing the borders: poly(A)-binding proteins working on both sides of the fence.

机译:越界:聚(A)结合蛋白在栅栏的两侧起作用。

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摘要

The addition of a 3' poly(A) tail is a pre-requisite for the maturation of the majority of eukaryotic transcripts. In most eukaryotic species, RNA poly(A) tails are bound by two important poly(A)-binding proteins (PABPs): PABPC1 and PABPN1 that localize to the cytoplasm and the nucleus, respectively. Such steady state localization for PABPN1 and PABPC1 led to a model whereby PABPN1-bound nuclear mRNAs are remodeled during or after nuclear export so that PABPN1 is replaced by PABPC1 to allow robust cap-dependent translation in the cytoplasm. Here we discuss evidence that challenge the view in which PABPN1 and PABPC1 function solely in the nucleus and cytoplasm, respectively. We discuss accumulating evidence that support nuclear roles for PABPC1 in mRNA biogenesis as well as cytoplasmic roles for PABPN1 in translational control. Because 3' poly(A) tails can also act as a degradation mark via the exosome complex of 3'-5' exonucleases, we also discuss recent results that involve the nuclear PABP in posttranscriptional gene regulation.
机译:大多数真核转录本成熟的前提是添加3'poly(A)尾巴。在大多数真核生物种中,RNA poly(A)尾部通过两个重要的poly(A)结合蛋白(PABP)结合:PABPC1和PABPN1分别位于细胞质和细胞核。 PABPN1和PABPC1的这种稳态定位导致了一个模型,在该模型中,在核输出期间或之后,PABPN1结合的核mRNA发生了重塑,因此PABPN1被PABPC1取代,从而允许在细胞质中进行牢固的帽依赖性翻译。在这里,我们讨论了挑战PABPN1和PABPC1分别仅在细胞核和细胞质中起作用的观点的证据。我们讨论了积累的证据,支持PABPC1在mRNA生物发生中的核作用以及在翻译控制中PABPN1的细胞质作用。因为3'poly(A)尾巴还可以通过3'-5'核酸外切酶的外泌体复合物充当降解标记,所以我们还讨论了涉及核PABP参与转录后基因调控的最新结果。

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