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肺炎衣原体CdsL调节CdsN ATP酶活性,且用模拟肽破坏该活性可防止细菌入侵。

Chlamydia Pneumoniae CdsL Regulates CdsN ATPase Activity, and Disruption with a Peptide Mimetic Prevents Bacterial Invasion.

作者信息

Stone Chris B, Bulir David C, Emdin Connor A, Pirie Ryan M, Porfilio Elisa A, Slootstra Jerry W, Mahony James B

机构信息

Michael G. DeGroote Institute for Infectious Disease Research, Faculty of Health Sciences, Department of Pathology and Molecular Medicine, McMaster University, Father Sean O'Sullivan Research Centre, St. Joseph's Healthcare Hamilton, ON, Canada.

出版信息

Front Microbiol. 2011 Feb 14;2:21. doi: 10.3389/fmicb.2011.00021. eCollection 2011.

Abstract

Chlamydiae are obligate intracellular pathogens that likely require type III secretion (T3S) to invade cells and replicate intracellularly within a cytoplasmic vacuole called an inclusion body. Chlamydia pneumoniae possess a YscL ortholog, CdsL, that has been shown to interact with the T3S ATPase (CdsN). In this report we demonstrate that CdsL down-regulates CdsN enzymatic activity in a dose-dependent manner. Using Pepscan epitope mapping we identified two separate binding domains to which CdsL binds viz. CdsN(221-229) and CdsN(265-270). We confirmed the binding domains using a pull-down assay and showed that GST-CdsN(221-270), which encompasses these peptides, co-purified with His-CdsL. Next, we used orthology modeling based on the crystal structure of a T3S ATPase ortholog from Escherichia coli, EscN, to map the binding domains on the predicted 3D structure of CdsN. The CdsL binding domains mapped to the catalytic domain of the ATPase, one in the central channel of the ATPase hexamer and one on the outer face. Since peptide mimetics have been used to disrupt essential protein interactions of the chlamydial T3S system and inhibit T3S-mediated invasion of HeLa cells, we hypothesized that if CdsL-CdsN binding is essential for regulating T3S then a CdsN peptide mimetic could be used to potentially block T3S and chlamydial invasion. Treatment of elementary body with a CdsN peptide mimetic inhibited C. pneumoniae invasion into HeLa cells in a dose-dependent fashion. This report represents the first use of Pepscan technology to identify binding domains for specific T3S proteins viz. CdsL on the ATPase, CdsN, and demonstrates that peptide mimetics can be used as anti-virulence factors to block bacterial invasion.

摘要

衣原体是专性细胞内病原体,可能需要III型分泌(T3S)来侵入细胞并在称为包涵体的细胞质液泡内进行细胞内复制。肺炎衣原体拥有一个YscL直系同源物CdsL,已证明它与T3S ATP酶(CdsN)相互作用。在本报告中,我们证明CdsL以剂量依赖性方式下调CdsN的酶活性。使用Pepscan表位作图,我们确定了CdsL结合的两个独立结合域,即CdsN(221 - 229)和CdsN(265 - 270)。我们使用下拉试验证实了这些结合域,并表明包含这些肽段的GST - CdsN(221 - 270)与His - CdsL共纯化。接下来,我们基于大肠杆菌T3S ATP酶直系同源物EscN的晶体结构进行同源建模,以在CdsN的预测三维结构上绘制结合域。CdsL结合域映射到ATP酶的催化域,一个在ATP酶六聚体的中央通道,一个在其外表面。由于肽模拟物已被用于破坏衣原体T3S系统的关键蛋白相互作用并抑制T3S介导的HeLa细胞侵袭,我们假设如果CdsL - CdsN结合对于调节T3S至关重要,那么CdsN肽模拟物可用于潜在地阻断T3S和衣原体侵袭。用CdsN肽模拟物处理原体以剂量依赖性方式抑制肺炎衣原体对HeLa细胞的侵袭。本报告首次使用Pepscan技术鉴定特定T3S蛋白(即ATP酶上的CdsL、CdsN)的结合域,并证明肽模拟物可作为抗毒力因子来阻断细菌侵袭。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85b3/3109343/b2128b9d432c/fmicb-02-00021-g001.jpg

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