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艰难梭菌630Δerm假定的脯氨酸-脯氨酸内肽酶CD1597的特性分析

Characterization of the Clostridioides difficile 630Δerm putative Pro-Pro endopeptidase CD1597.

作者信息

Claushuis Bart, de Ru Arnoud H, van Veelen Peter A, Hensbergen Paul J, Corver Jeroen

机构信息

Center for Proteomics and Metabolomics, Leiden University Medical Center, Leiden, 2333 ZA, The Netherlands.

Leiden University Center for Infectious Diseases, Leiden University Medical Center, Leiden, 2333 ZA, The Netherlands.

出版信息

Access Microbiol. 2024 Oct 8;6(10). doi: 10.1099/acmi.0.000855.v3. eCollection 2024.

Abstract

is the leading cause of antibiotic-associated infections worldwide. Within the host, can transition from a sessile to a motile state by secreting PPEP-1, which releases the cells from the intestinal epithelium by cleaving adhesion proteins. PPEP-1 belongs to the group of Pro-Pro endopeptidases (PPEPs), which are characterized by their unique ability to cleave proline-proline bonds. Interestingly, another putative member of this group, CD1597, is present in . Although it possesses a domain similar to other PPEPs, CD1597 displays several distinct features that suggest a markedly different role for this protein. We investigated the proteolytic activity of CD1597 by testing various potential substrates. In addition, we investigated the effect of the absence of CD1597 by generating an insertional mutant of the gene. Using the mutant, we sought to identify phenotypic changes through a series of experiments and quantitative proteomic analyses. Furthermore, we aimed to study the localization of this protein using a fluorogenic fusion protein. Despite its similarities to PPEP-1, CD1597 did not show proteolytic activity. In addition, the absence of CD1597 caused an increase in various sporulation proteins during the stationary phase, yet we did not observe any alterations in the sporulation frequency of the mutant. Furthermore, a promoter activity assay indicated a very low expression level of in vegetative cells, which was independent of the culture medium and growth stage. The low expression was corroborated by our comprehensive proteomic analysis of the whole cell cultures, which failed to identify CD1597. However, an analysis of purified spores identified CD1597 as part of the spore proteome. Hence, we predict that the protein is involved in sporulation, although we were unable to define a precise role for CD1597 in

摘要

是全球抗生素相关感染的主要原因。在宿主体内,它可以通过分泌PPEP-1从固着状态转变为运动状态,PPEP-1通过切割黏附蛋白将细胞从肠上皮释放出来。PPEP-1属于脯氨酸-脯氨酸内切肽酶(PPEPs)家族,其特点是具有切割脯氨酸-脯氨酸键的独特能力。有趣的是,该家族的另一个假定成员CD1597存在于……中。尽管它拥有与其他PPEPs相似的结构域,但CD1597表现出几个不同的特征,表明该蛋白具有明显不同的作用。我们通过测试各种潜在底物来研究CD1597的蛋白水解活性。此外,我们通过构建该基因的插入突变体来研究缺失CD1597的影响。利用该突变体,我们试图通过一系列实验和定量蛋白质组分析来确定表型变化。此外,我们旨在使用荧光融合蛋白研究该蛋白的定位。尽管CD1597与PPEP-1相似,但它没有表现出蛋白水解活性。此外,缺失CD1597导致稳定期各种芽孢形成蛋白增加,但我们没有观察到该突变体的芽孢形成频率有任何变化。此外,启动子活性分析表明在营养细胞中……的表达水平非常低,这与培养基和生长阶段无关。我们对全细胞培养物的综合蛋白质组分析证实了这种低表达,该分析未能鉴定出CD1597。然而,对纯化的……孢子的分析确定CD1597是孢子蛋白质组的一部分。因此,我们预测该蛋白参与芽孢形成,尽管我们无法确定CD1597在……中的精确作用

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d84/11460543/31b4f852a439/acmi-6-00855-g001.jpg

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