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沙眼衣原体生物学中 ClpC AAA+ ATPase 的分子特征。

Molecular Characterization of the ClpC AAA+ ATPase in the Biology of Chlamydia trachomatis.

机构信息

Department of Microbial Bioactive Compounds, Interfaculty Institute of Microbiology and Infection Medicine, University of Tübingen, Tübingen, Germany.

Department of Pathology and Microbiology, College of Medicine, University of Nebraska Medical Center, Omaha, Nebraska, USA.

出版信息

mBio. 2023 Apr 25;14(2):e0007523. doi: 10.1128/mbio.00075-23. Epub 2023 Mar 28.

Abstract

Bacterial AAA+ unfoldases are crucial for bacterial physiology by recognizing specific substrates and, typically, unfolding them for degradation by a proteolytic component. The aseinoytic rotease (Clp) system is one example where a hexameric unfoldase (e.g., ClpC) interacts with the tetradecameric proteolytic core ClpP. Unfoldases can have both ClpP-dependent and ClpP-independent roles in protein homeostasis, development, virulence, and cell differentiation. ClpC is an unfoldase predominantly found in Gram-positive bacteria and mycobacteria. Intriguingly, the obligate intracellular Gram-negative pathogen Chlamydia, an organism with a highly reduced genome, also encodes a ClpC ortholog, implying an important function for ClpC in chlamydial physiology. Here, we used a combination of and cell culture approaches to gain insight into the function of chlamydial ClpC. ClpC exhibits intrinsic ATPase and chaperone activities, with a primary role for the Walker B motif in the first nucleotide binding domain (NBD1). Furthermore, ClpC binds ClpP1P2 complexes via ClpP2 to form the functional protease ClpCP2P1 , which degraded arginine-phosphorylated β-casein. Cell culture experiments confirmed that higher order complexes of ClpC are present in chlamydial cells. Importantly, these data further revealed severe negative effects of both overexpression and depletion of ClpC in Chlamydia as revealed by a significant reduction in chlamydial growth. Here, again, NBD1 was critical for ClpC function. Hence, we provide the first mechanistic insight into the molecular and cellular function of chlamydial ClpC, which supports its essentiality in Chlamydia. ClpC is, therefore, a potential novel target for the development of antichlamydial agents. Chlamydia trachomatis is an obligate intracellular pathogen and the world's leading cause of preventable infectious blindness and bacterial sexually transmitted infections. Due to the high prevalence of chlamydial infections along with negative effects of current broad-spectrum treatment strategies, new antichlamydial agents with novel targets are desperately needed. In this context, bacterial Clp proteases have emerged as promising new antibiotic targets, since they often play central roles in bacterial physiology and, for some bacterial species, are even essential for survival. Here, we report on the chlamydial AAA+ unfoldase ClpC, its functional reconstitution and characterization, individually and as part of the ClpCP2P1 protease, and establish an essential role for ClpC in chlamydial growth and intracellular development, thereby identifying ClpC as a potential target for antichlamydial compounds.

摘要

细菌 AAA+ 展开酶通过识别特定的底物在细菌生理学中起着至关重要的作用,通常将它们展开以便由蛋白酶组件进行降解。天冬氨酸蛋白酶 (Clp) 系统就是一个例子,其中六聚体展开酶(例如 ClpC)与十四聚体蛋白酶核心 ClpP 相互作用。展开酶在蛋白质平衡、发育、毒力和细胞分化中具有 ClpP 依赖性和 ClpP 非依赖性作用。ClpC 是一种主要存在于革兰氏阳性菌和分枝杆菌中的展开酶。有趣的是,专性细胞内革兰氏阴性病原体衣原体,一种具有高度简化基因组的生物体,也编码 ClpC 同源物,这表明 ClpC 在衣原体生理学中具有重要功能。在这里,我们使用 和细胞培养方法的组合来深入了解衣原体 ClpC 的功能。ClpC 表现出内在的 ATP 酶和伴侣活性,其在第一个核苷酸结合域 (NBD1) 中的 Walker B 基序起主要作用。此外,ClpC 通过 ClpP2 结合 ClpP1P2 复合物形成功能性蛋白酶 ClpCP2P1 ,该蛋白酶降解精氨酸磷酸化的 β-酪蛋白。细胞培养实验证实,在衣原体细胞中存在更高阶的 ClpC 复合物。重要的是,这些数据进一步揭示了 ClpC 在衣原体中的过表达和耗尽都对衣原体的生长有严重的负面影响,这表明 ClpC 的缺失会导致衣原体的生长显著减少。在这里,NBD1 对于 ClpC 的功能至关重要。因此,我们提供了衣原体 ClpC 的分子和细胞功能的第一个机制见解,这支持了它在衣原体中的必要性。ClpC 因此是开发抗衣原体药物的潜在新靶标。沙眼衣原体是一种专性细胞内病原体,是可预防的传染性失明和细菌性性传播感染的全球主要原因。由于衣原体感染的高流行率以及当前广谱治疗策略的负面影响,迫切需要具有新靶标的新型抗衣原体药物。在这种情况下,细菌 Clp 蛋白酶已成为有前途的新抗生素靶标,因为它们通常在细菌生理学中发挥核心作用,并且对于某些细菌物种,甚至是生存所必需的。在这里,我们报告了衣原体 AAA+ 展开酶 ClpC,其单独作为 ClpCP2P1 蛋白酶的一部分以及作为其一部分的功能重建和表征,并确定了 ClpC 在衣原体生长和细胞内发育中的重要作用,从而将 ClpC 确定为潜在的抗衣原体化合物靶标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82b8/10128030/7d9dba8c9e07/mbio.00075-23-f001.jpg

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