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MRNA export and gene expression: The SAGA-TREX-2 connection

机译:MRNA输出和基因表达:SAGA-TREX-2连接

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In the gene expression field, different steps have been traditionally viewed as discrete and unconnected events. Nowadays, genetic and functional studies support the model of a coupled network of physical and functional connections to carry out mRNA biogenesis. Gene expression is a coordinated process that comprises different linked steps like transcription, RNA processing, export to the cytoplasm, translation and degradation of mRNAs. Its regulation is essential for cellular survival and can occur at many different levels. Transcription is the central function that occurs in the nucleus, and RNAPII plays an essential role in mRNA biogenesis. During transcription, nascent mRNA is associated with the mRNA-binding proteins involved in processing and export of the mRNA particle. Cells have developed a network of multi-protein complexes whose functions regulate the different factors involved both temporally and spatially. This coupling mechanism acts as a quality control to solve some of the organization problems of gene expression in vivo, where all the factors implicated ensure that mRNAs are ready to be exported and translated. In this review, we focus on the functional coupling of gene transcription and mRNA export, and place particular emphasis on the relationship between the NPC-associated complex, TREX2, and the transcription co-activator, SAGA. We have pinpointed the experimental evidence for Sus1's roles in transcription initiation, transcription elongation and mRNA export. In addition, we have reviewed other NPC-related processes such as gene gating to the nuclear envelope, the chromatin structure and the cellular context in which these processes take place. This article is part of a Special Issue entitled: Nuclear Transport and RNA Processing.
机译:在基因表达领域,传统上将不同的步骤视为离散和未关联的事件。如今,遗传和功能研究支持物理和功能连接的耦合网络模型来进行mRNA生物发生。基因表达是一个协调的过程,包括不同的链接步骤,例如转录,RNA处理,输出到细胞质,mRNA的翻译和降解。其调节对于细胞存活是必不可少的,并且可以在许多不同的水平上发生。转录是发生在细胞核中的核心功能,RNAPII在mRNA生物发生中起重要作用。在转录过程中,新生的mRNA与参与mRNA颗粒加工和输出的mRNA结合蛋白相关。细胞已经建立了由多种蛋白质组成的复合物网络,其功能调节着时空相关的不同因素。这种偶联机制可作为质量控制来解决体内基因表达的某些组织问题,其中涉及的所有因素均确保了mRNA易于输出和翻译。在这篇综述中,我们专注于基因转录和mRNA出口的功能耦合,并特别着重于与NPC相关的复合物TREX2和转录共激活因子SAGA之间的关系。我们已经找到了Sus1在转录起始,转录延伸和mRNA输出中的作用的实验证据。此外,我们还审查了其他与NPC相关的过程,例如基因选通到核膜,染色质结构和发生这些过程的细胞环境。本文是名为“核转运和RNA处理”的特刊的一部分。

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