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ComR蛋白对链球菌属物种间信息素的识别与选择性

Pheromone Recognition and Selectivity by ComR Proteins among Streptococcus Species.

作者信息

Shanker Erin, Morrison Donald A, Talagas Antoine, Nessler Sylvie, Federle Michael J, Prehna Gerd

机构信息

Department of Medicinal Chemistry and Pharmacognosy, University of Illinois at Chicago, Chicago, IL, United States of America.

Center for Biomolecular Science, University of Illinois at Chicago, Chicago, IL, United States of America.

出版信息

PLoS Pathog. 2016 Dec 1;12(12):e1005979. doi: 10.1371/journal.ppat.1005979. eCollection 2016 Dec.

Abstract

Natural transformation, or competence, is an ability inherent to bacteria for the uptake of extracellular DNA. This process is central to bacterial evolution and allows for the rapid acquirement of new traits, such as antibiotic resistance in pathogenic microorganisms. For the Gram-positive bacteria genus Streptococcus, genes required for competence are under the regulation of quorum sensing (QS) mediated by peptide pheromones. One such system, ComRS, consists of a peptide (ComS) that is processed (XIP), secreted, and later imported into the cytoplasm, where it binds and activates the transcription factor ComR. ComR then engages in a positive feedback loop for the expression of ComS and the alternative sigma-factor SigX. Although ComRS are present in the majority of Streptococcus species, the sequence of both ComS/XIP and ComR diverge significantly, suggesting a mechanism for species-specific communication. To study possible cross-talk between streptococcal species in the regulation of competence, and to explore in detail the molecular interaction between ComR and XIP we undertook an interdisciplinary approach. We developed a 'test-bed' assay to measure the activity of different ComR proteins in response to cognate and heterologous XIP peptides in vivo, revealing distinct ComR classes of strict, intermediate, and promiscuous specificity among species. We then solved an X-ray crystal structure of ComR from S. suis to further understand the interaction with XIP and to search for structural features in ComR proteins that may explain XIP recognition. Using the structure as a guide, we probed the apo conformation of the XIP-binding pocket by site-directed mutagenesis, both in test-bed cultures and biochemically in vitro. In alignments with ComR proteins from other species, we find that the pocket is lined by a variable and a conserved face, where residues of the conserved face contribute to ligand binding and the variable face discriminate among XIP peptides. Together, our results not only provide a model for XIP recognition and specificity, but also allow for the prediction of novel XIP peptides that induce ComR activity.

摘要

自然转化,即感受态,是细菌摄取细胞外DNA的固有能力。这一过程是细菌进化的核心,能使细菌快速获得新特性,比如致病微生物中的抗生素耐药性。对于革兰氏阳性菌属链球菌而言,感受态所需的基因受肽类信息素介导的群体感应(QS)调控。其中一个系统ComRS由一种肽(ComS)组成,该肽经加工后(XIP)分泌出来,随后被导入细胞质,在细胞质中它结合并激活转录因子ComR。然后ComR参与ComS和替代西格玛因子SigX表达的正反馈回路。尽管ComRS存在于大多数链球菌物种中,但ComS/XIP和ComR的序列差异显著,这表明存在物种特异性通讯机制。为了研究链球菌物种间在感受态调控方面可能存在的相互作用,并详细探究ComR与XIP之间的分子相互作用,我们采用了跨学科方法。我们开发了一种“试验台”检测法,以测量不同ComR蛋白在体内对同源和异源XIP肽的反应活性,揭示了物种间严格、中等和混杂特异性的不同ComR类别。然后我们解析了猪链球菌ComR的X射线晶体结构,以进一步了解其与XIP的相互作用,并寻找ComR蛋白中可能解释XIP识别的结构特征。以该结构为指导,我们通过定点诱变在试验台培养物和体外生化实验中探究了XIP结合口袋的无配体构象。在与其他物种的ComR蛋白比对时,我们发现该口袋由一个可变面和一个保守面构成,保守面上的残基有助于配体结合,可变面则区分不同的XIP肽。总之,我们的结果不仅提供了一个XIP识别和特异性的模型,还能预测诱导ComR活性的新型XIP肽。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e810/5131902/7c7598488768/ppat.1005979.g001.jpg

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