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UPFront and center in RNA decay: UPF1 in nonsense-mediated mRNA decay and beyond

机译:UPFront和RNA衰变的中心:无意义介导的mRNA衰变中的UPF1

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摘要

Nonsense-mediated mRNA decay (NMD), which is arguably the best-characterized translation-dependent regulatory pathway in mammals, selectively degrades mRNAs as a means of post-transcriptional gene control. Control can be for the purpose of ensuring the quality of gene expression. Alternatively, control can facilitate the adaptation of cells to changes in their environment. The key to NMD, no matter what its purpose, is the ATP-dependent RNA helicase upstream frameshift 1 (UPF1), without which NMD fails to occur. However, UPF1 does much more than regulate NMD. As examples, UPF1 is engaged in functionally diverse mRNA decay pathways mediated by a variety of RNA-binding proteins that include staufen, stem–loop-binding protein, glucocorticoid receptor, and regnase 1. Moreover, UPF1 promotes tudor-staphylococcal/micrococcal-like nuclease-mediated microRNA decay. In this review, we first focus on how the NMD machinery recognizes an NMD target and triggers mRNA degradation. Next, we compare and contrast the mechanisms by which UPF1 functions in the decay of other mRNAs and also in microRNA decay. UPF1, as a protein polymath, engenders cells with the ability to shape their transcriptome in response to diverse biological and physiological needs.
机译:无义介导的mRNA衰变(NMD),可以说是哺乳动物中最典型的翻译依赖性调控途径,它可以选择性地降解mRNA,作为转录后基因控制的一种手段。控制可以出于确保基因表达质量的目的。可替代地,控制可以促进细胞适应其环境变化。不管目的如何,NMD的关键是依赖于ATP的RNA解旋酶上游移码1(UPF1),否则NMD不会发生。但是,UPF1的作用远不止调节NMD。例如,UPF1参与功能多样的mRNA衰变途径,该途径由各种RNA结合蛋白介导,包括staufen,茎-环结合蛋白,糖皮质激素受体和葡萄糖酶1。此外,UPF1促进金边葡萄球菌/微球菌样。核酸酶介导的microRNA衰减。在这篇综述中,我们首先关注NMD机制如何识别NMD目标并触发mRNA降解。接下来,我们比较并对比了UPF1在其他mRNA的衰减以及microRNA衰减中起作用的机制。 UPF1作为蛋白质合成物,可使细胞具有响应各种生物学和生理需要而塑造其转录组的能力。

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