Borbolis Fivos, Syntichaki Popi
Biomedical Research Foundation of the Academy of Athens, Center of Basic Research, Athens, Greece.
FEBS J. 2022 Mar;289(6):1457-1475. doi: 10.1111/febs.15798. Epub 2021 Mar 12.
It is well established that mRNA steady-state levels do not directly correlate with transcription rate. This is attributed to the multiple post-transcriptional mechanisms, which control both mRNA turnover and translation within eukaryotic cells. One such mechanism is the removal of the 5' end cap structure of RNAs (decapping). This 5' cap plays a fundamental role in cellular functions related to mRNA processing, transport, translation, quality control, and decay, while its chemical modifications influence the fate of cytoplasmic mRNAs. Decapping is a highly controlled process, performed by multiple decapping enzymes, and regulated by complex cellular networks. In this review, we provide an updated synopsis of 5' end modifications and functions, and give an overview of mRNA decapping enzymes, presenting their enzymatic properties. Focusing on DCP2 decapping enzyme, a major component on the 5'-3' mRNA decay pathway, we describe cis-elements and trans-acting factors that affect its activity, substrate specificity, and cellular localization. Finally, we discuss current knowledge on the biological functions of mRNA decapping and decay factors, highlighting the major questions that remain to be addressed.
众所周知,mRNA稳态水平与转录速率并不直接相关。这归因于多种转录后机制,这些机制控制着真核细胞内mRNA的周转和翻译。其中一种机制是去除RNA的5'端帽结构(去帽)。这种5'帽在与mRNA加工、运输、翻译、质量控制和衰变相关的细胞功能中起着基本作用,而其化学修饰会影响细胞质mRNA的命运。去帽是一个高度受控的过程,由多种去帽酶执行,并受复杂的细胞网络调节。在本综述中,我们提供了5'端修饰和功能的最新概述,并概述了mRNA去帽酶,介绍了它们的酶学性质。聚焦于5'-3'mRNA衰变途径中的主要成分DCP2去帽酶,我们描述了影响其活性、底物特异性和细胞定位的顺式元件和反式作用因子。最后,我们讨论了关于mRNA去帽和衰变因子生物学功能的当前知识,强调了仍有待解决的主要问题。