Grudzien-Nogalska Ewa, Kiledjian Megerditch
Department of Cell Biology and Neuroscience, Rutgers University, Piscataway, NJ, USA.
Wiley Interdiscip Rev RNA. 2017 Jan;8(1). doi: 10.1002/wrna.1379. Epub 2016 Jul 17.
Removal of the 5' end cap is a critical determinant controlling mRNA stability and efficient gene expression. Removal of the cap is exquisitely controlled by multiple direct and indirect regulators that influence association with the cap and the catalytic step. A subset of these factors directly stimulate activity of the decapping enzyme, while others influence remodeling of factors bound to mRNA and indirectly stimulate decapping. Furthermore, the components of the general decapping machinery can also be recruited by mRNA-specific regulatory proteins to activate decapping. The Nudix hydrolase, Dcp2, identified as a first decapping enzyme, cleaves capped mRNA and initiates 5'-3' degradation. Extensive studies on Dcp2 led to broad understanding of its activity and the regulation of transcript specific decapping and decay. Interestingly, seven additional Nudix proteins possess intrinsic decapping activity in vitro and at least two, Nudt16 and Nudt3, are decapping enzymes that regulate mRNA stability in cells. Furthermore, a new class of decapping proteins within the DXO family preferentially function on incompletely capped mRNAs. Importantly, it is now evident that each of the characterized decapping enzymes predominantly modulates only a subset of mRNAs, suggesting the existence of multiple decapping enzymes functioning in distinct cellular pathways. WIREs RNA 2017, 8:e1379. doi: 10.1002/wrna.1379 For further resources related to this article, please visit the WIREs website.
去除5'端帽是控制mRNA稳定性和有效基因表达的关键决定因素。帽的去除受到多种直接和间接调节因子的精确控制,这些调节因子影响与帽的结合以及催化步骤。这些因子中的一部分直接刺激去帽酶的活性,而其他因子则影响与mRNA结合的因子的重塑并间接刺激去帽。此外,一般去帽机制的成分也可以被mRNA特异性调节蛋白招募以激活去帽。Nudix水解酶Dcp2被鉴定为第一种去帽酶,它切割带帽的mRNA并启动5'-3'降解。对Dcp2的广泛研究使人们对其活性以及转录本特异性去帽和衰变的调节有了广泛的了解。有趣的是,另外七种Nudix蛋白在体外具有内在的去帽活性,并且至少有两种,即Nudt16和Nudt3,是调节细胞中mRNA稳定性的去帽酶。此外,DXO家族中的一类新的去帽蛋白优先作用于帽不完全的mRNA。重要的是,现在很明显,每种已表征的去帽酶主要仅调节一部分mRNA,这表明存在多种在不同细胞途径中起作用的去帽酶。WIREs RNA 2017, 8:e1379. doi: 10.1002/wrna.1379 有关本文的更多资源,请访问WIREs网站。