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Dcp2去除m2,2,7GpppN加帽的RNA,其活性取决于序列和环境。

Dcp2 Decaps m2,2,7GpppN-capped RNAs, and its activity is sequence and context dependent.

作者信息

Cohen Leah S, Mikhli Claudette, Jiao Xinfu, Kiledjian Megerditch, Kunkel Glenna, Davis Richard E

机构信息

Department of Biology, City University of New York Graduate Center, CSI, Staten Island, 10314, USA.

出版信息

Mol Cell Biol. 2005 Oct;25(20):8779-91. doi: 10.1128/MCB.25.20.8779-8791.2005.

Abstract

Hydrolysis of the mRNA cap plays a pivotal role in initiating and completing mRNA turnover. In nematodes, mRNA metabolism and cap-interacting proteins must deal with two populations of mRNAs, spliced leader trans-spliced mRNAs with a trimethylguanosine cap and non-trans-spliced mRNAs with a monomethylguanosine cap. We describe here the characterization of nematode Dcp1 and Dcp2 proteins. Dcp1 was inactive in vitro on both free cap and capped RNA and did not significantly enhance Dcp2 activity. Nematode Dcp2 is an RNA-decapping protein that does not bind cap and is not inhibited by cap analogs but is effectively inhibited by competing RNA irrespective of RNA sequence and cap. Nematode Dcp2 activity is influenced by both 5' end sequence and its context. The trans-spliced leader sequence on mRNAs reduces Dcp2 activity approximately 10-fold, suggesting that 5'-to-3' turnover of trans-spliced RNAs may be regulated. Nematode Dcp2 decaps both m(7)GpppG- and m(2,2,7)GpppG-capped RNAs. Surprisingly, both budding yeast and human Dcp2 are also active on m(2,2,7)GpppG-capped RNAs. Overall, the data suggest that Dcp2 activity can be influenced by both sequence and context and that Dcp2 may contribute to gene regulation in multiple RNA pathways, including monomethyl- and trimethylguanosine-capped RNAs.

摘要

mRNA帽的水解在启动和完成mRNA周转过程中起着关键作用。在线虫中,mRNA代谢和帽相互作用蛋白必须处理两类mRNA,即带有三甲基鸟苷帽的剪接前导序列反式剪接mRNA和带有单甲基鸟苷帽的非反式剪接mRNA。我们在此描述了线虫Dcp1和Dcp2蛋白的特性。Dcp1在体外对游离帽和带帽RNA均无活性,且不会显著增强Dcp2的活性。线虫Dcp2是一种RNA去帽蛋白,它不结合帽,也不受帽类似物的抑制,但无论RNA序列和帽如何,均能被竞争性RNA有效抑制。线虫Dcp2的活性受5'端序列及其背景的影响。mRNA上的反式剪接前导序列使Dcp2活性降低约10倍,这表明反式剪接RNA的5'至3'周转可能受到调控。线虫Dcp2能去除m(7)GpppG和m(2,2,7)GpppG带帽的RNA。令人惊讶的是,出芽酵母和人类的Dcp2对m(2,2,7)GpppG带帽的RNA也有活性。总体而言,数据表明Dcp2的活性可受序列和背景的影响,且Dcp2可能在多种RNA途径的基因调控中发挥作用,包括单甲基和三甲基鸟苷带帽的RNA。

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