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胞质外功能σ因子蛋白家族的进化

Evolution of the extracytoplasmic function σ factor protein family.

作者信息

Pinto Daniela, da Fonseca Rute R

机构信息

Technische Universität Dresden, Institute of Microbiology, Zellescher Weg 20b, 01217 Dresden, Germany.

Center for Macroecology, Evolution and Climate (CMEC), GLOBE Institute, University of Copenhagen, 1350 Copenhagen K, Denmark.

出版信息

NAR Genom Bioinform. 2020 Jan 13;2(1):lqz026. doi: 10.1093/nargab/lqz026. eCollection 2020 Mar.

Abstract

Understanding transcription has been a central goal of the scientific community for decades. However, much is still unknown, especially concerning how it is regulated. In bacteria, a single DNA-directed RNA-polymerase performs the whole of transcription. It contains multiple subunits, among which the σ factor that confers promoter specificity. Besides the housekeeping σ factor, bacteria encode several alternative σ factors. The most abundant and diverse family of alternative σ factors, the extracytoplasmic function (ECF) family, regulates transcription of genes associated with stressful scenarios, making them key elements of adaptation to specific environmental changes. Despite this, the evolutionary history of ECF σ factors has never been investigated. Here, we report on our analysis of thousands of members of this family. We show that single events are in the origin of alternative modes of regulation of ECF σ factor activity that require partner proteins, but that multiple events resulted in acquisition of regulatory extensions. Moreover, in Bacteroidetes there is a recent duplication of an ecologically relevant gene cluster that includes an ECF σ factor, whereas in Planctomycetes duplication generates distinct C-terminal extensions after fortuitous insertion of the duplicated σ factor. At last, we also demonstrate horizontal transfer of ECF σ factors between soil bacteria.

摘要

几十年来,了解转录一直是科学界的核心目标。然而,仍有许多未知之处,尤其是关于转录如何被调控。在细菌中,单一的DNA指导的RNA聚合酶执行整个转录过程。它包含多个亚基,其中σ因子赋予启动子特异性。除了管家σ因子外,细菌还编码几种替代σ因子。替代σ因子中最丰富多样的家族,即胞外功能(ECF)家族,调节与应激情况相关的基因转录,使其成为适应特定环境变化的关键要素。尽管如此,ECF σ因子的进化历史从未被研究过。在这里,我们报告了对该家族数千个成员的分析。我们表明,单一事件是需要伴侣蛋白的ECF σ因子活性调控替代模式的起源,但多个事件导致了调控延伸的获得。此外,在拟杆菌门中,一个包括ECF σ因子的生态相关基因簇最近发生了复制,而在浮霉菌门中,复制在偶然插入复制的σ因子后产生了不同的C末端延伸。最后,我们还证明了ECF σ因子在土壤细菌之间的水平转移。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38c8/7671368/c000774433f4/lqz026fig1.jpg

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