MoaB2, a newly identified transcription factor, binds to σA in Mycobacterium smegmatis.

IF 2.7 3区 生物学 Q3 MICROBIOLOGY
Barbora Brezovská, Subhash Narasimhan, Michaela Šiková, Hana Šanderová, Tomáš Kovaľ, Nabajyoti Borah, Mahmoud Shoman, Debora Pospíšilová, Viola Vaňková Hausnerová, Dávid Tužinčin, Martin Černý, Jan Komárek, Martina Janoušková, Milada Kambová, Petr Halada, Alena Křenková, Martin Hubálek, Mária Trundová, Jan Dohnálek, Jarmila Hnilicová, Lukáš Žídek, Libor Krásný
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Abstract

In mycobacteria, σA is the primary sigma factor. This essential protein binds to RNA polymerase (RNAP) and mediates transcription initiation of housekeeping genes. Our knowledge about this factor in mycobacteria is limited. Here, we performed an unbiased search for interacting partners of Mycobacterium smegmatis σA. The search revealed a number of proteins; prominent among them was MoaB2. The σA-MoaB2 interaction was validated and characterized by several approaches, revealing that it likely does not require RNAP and is specific, as alternative σ factors (e.g., closely related σB) do not interact with MoaB2. The structure of MoaB2 was solved by X-ray crystallography. By immunoprecipitation and nuclear magnetic resonance, the unique, unstructured N-terminal domain of σA was identified to play a role in the σA-MoaB2 interaction. Functional experiments then showed that MoaB2 inhibits σA-dependent (but not σB-dependent) transcription and may increase the stability of σA in the cell. We propose that MoaB2, by sequestering σA, has a potential to modulate gene expression. In summary, this study has uncovered a new binding partner of mycobacterial σA, paving the way for future investigation of this phenomenon.IMPORTANCEMycobacteria cause serious human diseases such as tuberculosis and leprosy. The mycobacterial transcription machinery is unique, containing transcription factors such as RbpA, CarD, and the RNA polymerase (RNAP) core-interacting small RNA Ms1. Here, we extend our knowledge of the mycobacterial transcription apparatus by identifying MoaB2 as an interacting partner of σA, the primary sigma factor, and characterize its effects on transcription and σA stability. This information expands our knowledge of interacting partners of subunits of mycobacterial RNAP, providing opportunities for future development of antimycobacterial compounds.

新发现的转录因子 MoaB2 与分枝杆菌中的σA 结合。
在分枝杆菌中,σA 是主要的σ因子。这种重要的蛋白质与 RNA 聚合酶(RNAP)结合,并介导管家基因的转录启动。我们对分枝杆菌中这一因子的了解还很有限。在此,我们对分枝杆菌σA的相互作用伙伴进行了无偏搜索。搜索发现了许多蛋白质,其中最突出的是 MoaB2。σA-MoaB2的相互作用通过几种方法得到了验证和表征,发现它可能不需要RNAP,而且是特异性的,因为其他σ因子(如密切相关的σB)并不与MoaB2相互作用。MoaB2 的结构是通过 X 射线晶体学解决的。通过免疫沉淀和核磁共振,确定了σA独特的、非结构化的N端结构域在σA-MoaB2相互作用中的作用。随后的功能实验表明,MoaB2 可抑制σA 依赖性(而非σB 依赖性)转录,并可增加σA 在细胞中的稳定性。我们认为,MoaB2通过封存σA,具有调节基因表达的潜力。总之,这项研究发现了分枝杆菌σA的一个新结合伙伴,为今后研究这一现象铺平了道路。重要意义分枝杆菌会导致严重的人类疾病,如结核病和麻风病。分枝杆菌的转录机制非常独特,包含 RbpA、CarD 等转录因子以及与 RNA 聚合酶(RNAP)核心相互作用的小 RNA Ms1。在这里,我们扩展了对分枝杆菌转录机制的了解,确定 MoaB2 是σA(主要的σ因子)的相互作用伙伴,并描述了它对转录和σA 稳定性的影响。这些信息扩展了我们对分枝杆菌 RNAP 亚基相互作用伙伴的了解,为未来开发抗分枝杆菌化合物提供了机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Bacteriology
Journal of Bacteriology 生物-微生物学
CiteScore
6.10
自引率
9.40%
发文量
324
审稿时长
1.3 months
期刊介绍: The Journal of Bacteriology (JB) publishes research articles that probe fundamental processes in bacteria, archaea and their viruses, and the molecular mechanisms by which they interact with each other and with their hosts and their environments.
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