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NusG,一种古老但进化迅速的转录因子。

NusG, an Ancient Yet Rapidly Evolving Transcription Factor.

作者信息

Wang Bing, Artsimovitch Irina

机构信息

Department of Microbiology and the Center for RNA Biology, The Ohio State University, Columbus, OH, United States.

出版信息

Front Microbiol. 2021 Jan 8;11:619618. doi: 10.3389/fmicb.2020.619618. eCollection 2020.

Abstract

Timely and accurate RNA synthesis depends on accessory proteins that instruct RNA polymerase (RNAP) where and when to start and stop transcription. Among thousands of transcription factors, NusG/Spt5 stand out as the only universally conserved family of regulators. These proteins interact with RNAP to promote uninterrupted RNA synthesis and with diverse cellular partners to couple transcription to RNA processing, modification or translation, or to trigger premature termination of aberrant transcription. NusG homologs are present in all cells that utilize bacterial-type RNAP, from endosymbionts to plants, underscoring their ancient and essential function. Yet, in stark contrast to other core RNAP components, NusG family is actively evolving: horizontal gene transfer and sub-functionalization drive emergence of NusG paralogs, such as bacterial LoaP, RfaH, and UpxY. These specialized regulators activate a few (or just one) operons required for expression of antibiotics, capsules, secretion systems, toxins, and other niche-specific macromolecules. Despite their common origin and binding site on the RNAP, NusG homologs differ in their target selection, interacting partners and effects on RNA synthesis. Even among housekeeping NusGs from diverse bacteria, some factors promote pause-free transcription while others slow the RNAP down. Here, we discuss structure, function, and evolution of NusG proteins, focusing on unique mechanisms that determine their effects on gene expression and enable bacterial adaptation to diverse ecological niches.

摘要

及时且准确的RNA合成依赖于辅助蛋白,这些蛋白指导RNA聚合酶(RNAP)在何处以及何时开始和停止转录。在数千种转录因子中,NusG/Spt5是唯一普遍保守的调节因子家族。这些蛋白与RNAP相互作用以促进不间断的RNA合成,并与多种细胞伴侣相互作用,将转录与RNA加工、修饰或翻译偶联起来,或者触发异常转录的过早终止。NusG同源物存在于所有利用细菌型RNAP的细胞中,从内共生体到植物,这突出了它们古老且重要的功能。然而,与其他核心RNAP组分形成鲜明对比的是,NusG家族正在积极进化:水平基因转移和亚功能化驱动了NusG旁系同源物的出现,如细菌的LoaP、RfaH和UpxY。这些特殊的调节因子激活了少数(或仅一个)表达抗生素、荚膜、分泌系统、毒素和其他特定生态位大分子所需的操纵子。尽管它们在RNAP上有共同的起源和结合位点,但NusG同源物在其靶标选择、相互作用伴侣以及对RNA合成的影响方面存在差异。即使在来自不同细菌的管家NusG中,一些因子促进无停顿转录,而另一些则使RNAP减慢。在这里,我们讨论NusG蛋白的结构、功能和进化,重点关注决定它们对基因表达的影响并使细菌适应不同生态位的独特机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2206/7819879/8136228d08da/fmicb-11-619618-g001.jpg

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