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衣原体和其他专性细胞内细菌中 RNA 聚合酶 ω 亚基的鉴定和结构建模。

Identification and Structural Modeling of the RNA Polymerase Omega Subunits in Chlamydiae and Other Obligate Intracellular Bacteria.

机构信息

Department of Pharmacology, Rutgers-Robert Wood Johnson Medical School, Piscataway, New Jersey, USA.

Graduate Program in Physiology and Integrative Biology, Rutgers School of Graduate Studies, Piscataway, New Jersey, USA.

出版信息

mBio. 2023 Feb 28;14(1):e0349922. doi: 10.1128/mbio.03499-22. Epub 2023 Jan 31.

Abstract

Gene transcription in bacteria is carried out by the multisubunit RNA polymerase (RNAP), which is composed of a catalytic core enzyme and a promoter-recognizing σ factor. The core enzyme comprises two α subunits, one β subunit, one β' subunit, and one ω subunit. The ω subunit plays critical roles in the assembly of the core enzyme and other cellular functions, including the regulation of bacterial growth, the stress response, and biofilm formation. However, the identity of an ω subunit for the obligate intracellular bacterium Chlamydia has not previously been determined. Here, we report the identification of the hypothetical protein CTL0286 as the probable chlamydial ω subunit based on sequence, synteny, and AlphaFold and AlphaFold-Multimer three-dimensional-structure predictions. Our findings indicate that CTL0286 functions as the missing ω subunit of chlamydial RNAP. Our extended analysis also indicates that all obligate intracellular bacteria have ω orthologs. Chlamydiae are obligate intracellular bacteria that replicate only inside eukaryotic cells. Previously, it has not been possible to identify a candidate gene encoding the chlamydial RNA polymerase ω subunit, and it has been hypothesized that the chlamydial RNA polymerase ω subunit was lost in the evolutionary process through which Chlamydiae reduced their genome size and proteome sizes to adapt to an obligate intracellular lifestyle. Here, we report the identification of the chlamydial RNA polymerase ω subunit, based on conserved sequence, conserved synteny, AlphaFold-predicted conserved three-dimensional structure, and AlfaFold-Multimer-predicted conserved interactions. Our identification of the previously elusive chlamydial RNA polymerase ω subunit sets the stage for investigation of its roles in regulation of gene expression during chlamydial growth, development, and stress responses, and sets the stage for preparation and study of the intact chlamydial RNA polymerase and its interactions with inhibitors.

摘要

细菌中的基因转录是由多亚基 RNA 聚合酶 (RNAP) 完成的,该酶由一个催化核心酶和一个识别启动子的 σ 因子组成。核心酶由两个 α 亚基、一个 β 亚基、一个 β'亚基和一个 ω 亚基组成。ω 亚基在核心酶的组装和其他细胞功能中发挥着关键作用,包括细菌生长的调节、应激反应和生物膜形成。然而,以前尚未确定专性细胞内细菌衣原体的 ω 亚基。在这里,我们根据序列、基因同线性和 AlphaFold 和 AlphaFold-Multimer 三维结构预测,报告了鉴定假定蛋白 CTL0286 为可能的衣原体 ω 亚基。我们的研究结果表明,CTL0286 作为衣原体 RNAP 的缺失 ω 亚基发挥作用。我们的扩展分析还表明,所有专性细胞内细菌都有 ω 同源物。衣原体是仅在真核细胞内复制的专性细胞内细菌。以前,不可能确定候选基因编码衣原体 RNA 聚合酶 ω 亚基,并且已经假设衣原体 RNA 聚合酶 ω 亚基在衣原体减少其基因组大小和蛋白质组大小以适应专性细胞内生活方式的进化过程中丢失了。在这里,我们根据保守序列、保守基因同线性、AlphaFold 预测的保守三维结构和 AlfaFold-Multimer 预测的保守相互作用,报告了衣原体 RNA 聚合酶 ω 亚基的鉴定。我们对以前难以捉摸的衣原体 RNA 聚合酶 ω 亚基的鉴定为研究其在衣原体生长、发育和应激反应过程中调节基因表达的作用奠定了基础,并为制备和研究完整的衣原体 RNA 聚合酶及其与抑制剂的相互作用奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1dfd/9973325/7820782cf407/mbio.03499-22-f001.jpg

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