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芽孢皮层裂解酶和YlaJ/YhcN脂蛋白的结构与功能分析

Structural and functional analysis of spore cortex lytic enzymes and YlaJ/YhcN lipoproteins.

作者信息

Mustafa Amin, Al Riyami Bahja, Ow-Young-Villarreal Giannina, Caldbeck Rebecca, Pin David Chan Hian, Yarrow Joshua, Christie Graham

机构信息

Department of Chemical Engineering and Biotechnology, University of Cambridge, Cambridge, UK.

Present address: Faculty of Chemical Engineering & Technology, Universiti Malaysia Perlis, Arau, Perlis, Malaysia.

出版信息

Microbiology (Reading). 2025 Aug;171(8). doi: 10.1099/mic.0.001591.

Abstract

Resumption of the planktonic phase of the cell cycle necessitates degradation of certain morphological structures and physiological features that confer metabolic dormancy and multi-factorial resistance properties to the spore form of the bacterium. Depolymerization of the peptidoglycan cortex, which is crucial to maintenance of spore dormancy, constitutes a major germination event and is conducted by a complement of spore cortex lytic enzymes that are active only during spore germination. This work reports on the structure and function of the major cortex lytic enzymes in spores, revealing insight to their location, individual contributions to germination when triggered by different routes and regions of the SleB protein that are important for mediating interactions with its peptidoglycan substrate. The effect of null mutations to lipoproteins of the YlaJ/YhcN family on spore properties is also characterized, revealing parallels with prior observations concerning YlaJ's influence on SleB activity during germination. Finally, a structural model of a putative SleB-YpeB-YlaJ complex is presented. The model, which was subject to an initial validation by evolutionary covariance analysis and site-directed mutagenesis, reveals how the SleB protein might be held in an inactive state courtesy of its interactions with YpeB and YlaJ during spore dormancy, potentially shedding light on a long-standing puzzle in spore germination.

摘要

细菌细胞周期恢复到浮游生长阶段需要降解某些形态结构和生理特征,这些特征赋予细菌芽孢代谢休眠和多因素抗性。肽聚糖皮层的解聚对维持芽孢休眠至关重要,是芽孢萌发的主要事件,由仅在芽孢萌发时才具有活性的一组芽孢皮层裂解酶介导。这项工作报道了芽孢中主要皮层裂解酶的结构和功能,揭示了它们的定位、在不同途径触发萌发时的个体作用以及SleB蛋白中对介导与肽聚糖底物相互作用很重要的区域。还对YlaJ/YhcN家族脂蛋白的无效突变对芽孢特性的影响进行了表征,揭示了与之前关于YlaJ在萌发过程中对SleB活性影响的观察结果的相似之处。最后,给出了一个假定的SleB-YpeB-YlaJ复合物的结构模型。该模型通过进化协方差分析和定点诱变进行了初步验证,揭示了在芽孢休眠期间,SleB蛋白如何通过与YpeB和YlaJ的相互作用而处于无活性状态,这可能为芽孢萌发中一个长期存在的谜题提供线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1881/12331253/0008863d2129/mic-171-01591-g001.jpg

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