Collart Martine A, Audebert Léna, Bushell Martin
Department of Microbiology and Molecular Medicine, Institute of Genetics and Genomics Geneva, University of Geneva, Faculty of Medicine, Genève, Switzerland.
Cancer Research UK Beatson Institute, Glasgow, UK.
Wiley Interdiscip Rev RNA. 2023 Nov 27;15(1):e1827. doi: 10.1002/wrna.1827.
The Ccr4-Not complex is a global regulator of mRNA metabolism in eukaryotic cells that is most well-known to repress gene expression. Delivery of the complex to mRNAs through a multitude of distinct mechanisms accelerates their decay, yet Ccr4-Not also plays an important role in co-translational processes, such as co-translational association of proteins and delivery of translating mRNAs to organelles. The recent structure of Not5 interacting with the translated ribosome has brought to light that embedded information within the codon sequence can be monitored by recruitment of the Ccr4-Not complex to elongating ribosomes. Thereby, the Ccr4-Not complex is empowered with regulatory decisions determining the fate of proteins being synthesized and their encoding mRNAs. This review will focus on the roles of the complex in translation and dynamics of co-translation events. This article is categorized under: Translation > Mechanisms Translation > Regulation.
Ccr4-Not复合物是真核细胞中mRNA代谢的全局调节因子,最为人所知的是它能抑制基因表达。该复合物通过多种不同机制作用于mRNA,加速其降解,然而Ccr4-Not在共翻译过程中也起着重要作用,比如蛋白质的共翻译结合以及将正在翻译的mRNA转运到细胞器。最近Not5与翻译中的核糖体相互作用的结构揭示,密码子序列中的嵌入信息可通过Ccr4-Not复合物招募到延伸中的核糖体来进行监测。因此,Ccr4-Not复合物被赋予了决定正在合成的蛋白质及其编码mRNA命运的调控决策权。本综述将聚焦于该复合物在翻译及共翻译事件动态过程中的作用。本文分类如下:翻译>机制;翻译>调控。