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Xp54及相关(类DDX6)RNA解旋酶:在信使核糖核蛋白组装、翻译调控和RNA降解中的作用。

Xp54 and related (DDX6-like) RNA helicases: roles in messenger RNP assembly, translation regulation and RNA degradation.

作者信息

Weston Andrew, Sommerville John

机构信息

School of Biology, University of St Andrews, St Andrews, Fife KY16 9TS, Scotland, UK.

出版信息

Nucleic Acids Res. 2006 Jun 12;34(10):3082-94. doi: 10.1093/nar/gkl409. Print 2006.

Abstract

The DEAD-box RNA helicase Xp54 is an integral component of the messenger ribonucleoprotein (mRNP) particles of Xenopus oocytes. In oocytes, several abundant proteins bind pre-mRNA transcripts to modulate nuclear export, RNA stability and translational fate. Of these, Xp54, the mRNA-masking protein FRGY2 and its activating protein kinase CK2alpha, bind to nascent transcripts on chromosome loops, whereas an Xp54-associated factor, RapA/B, binds to the mRNP complex in the cytoplasm. Over-expression, mutation and knockdown experiments indicate that Xp54 functions to change the conformation of mRNP complexes, displacing one subset of proteins to accommodate another. The sequence of Xp54 is highly conserved in a wide spectrum of organisms. Like Xp54, Drosophila Me31B and Caenorhabditis CGH-1 are required for proper meiotic development, apparently by regulating the translational activation of stored mRNPs and also for sorting certain mRNPs into germplasm-containing structures. Studies on yeast Dhh1 and mammalian rck/p54 have revealed a key role for these helicases in mRNA degradation and in earlier remodelling of mRNP for entry into translation, storage or decay pathways. The versatility of Xp54 and related helicases in modulating the metabolism of mRNAs at all stages of their lifetimes marks them out as key regulators of post-transcriptional gene expression.

摘要

DEAD盒RNA解旋酶Xp54是非洲爪蟾卵母细胞中信使核糖核蛋白(mRNP)颗粒的一个组成部分。在卵母细胞中,几种丰富的蛋白质与前体mRNA转录本结合,以调节核输出、RNA稳定性和翻译命运。其中,Xp54、mRNA掩盖蛋白FRGY2及其激活蛋白激酶CK2α,与染色体环上的新生转录本结合,而一种与Xp54相关的因子RapA/B,则与细胞质中的mRNP复合物结合。过表达、突变和敲低实验表明,Xp54的功能是改变mRNP复合物的构象,取代一部分蛋白质以容纳另一部分蛋白质。Xp54的序列在广泛的生物体中高度保守。与Xp54一样,果蝇的Me31B和秀丽隐杆线虫的CGH-1对于正常的减数分裂发育是必需的,显然是通过调节储存的mRNP的翻译激活,以及将某些mRNP分选到含有种质的结构中。对酵母Dhh1和哺乳动物rck/p54的研究揭示了这些解旋酶在mRNA降解以及mRNP进入翻译、储存或降解途径的早期重塑中的关键作用。Xp54和相关解旋酶在mRNA生命周期的所有阶段调节其代谢的多功能性,使其成为转录后基因表达的关键调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2d6/1477856/bb73abbe1c07/gkl409f1.jpg

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