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具有用于CheR和CheB结合的C末端五肽的化学感受器在维持宿主相互作用的细菌中大量存在。

Chemoreceptors with C-terminal pentapeptides for CheR and CheB binding are abundant in bacteria that maintain host interactions.

作者信息

Ortega Álvaro, Krell Tino

机构信息

Department of Biochemistry and Molecular Biology 'B' and Immunology, Faculty of Chemistry, University of Murcia, Regional Campus of International Excellence "Campus Mare Nostrum", Murcia, Spain.

Department of Environmental Protection, Estación Experimental del Zaidín, Consejo Superior de Investigaciones Científicas, Granada, Spain.

出版信息

Comput Struct Biotechnol J. 2020 Jul 16;18:1947-1955. doi: 10.1016/j.csbj.2020.07.006. eCollection 2020.

DOI:10.1016/j.csbj.2020.07.006
PMID:32774789
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7390727/
Abstract

Chemosensory pathways represent a major prokaryotic signal transduction mechanism that is based on signal sensing by chemoreceptors. An essential feature of chemosensory pathways is the CheR and CheB mediated control of chemoreceptor methylation causing pathway adaptation. At their C-terminal extension the Tar and Tsr model chemoreceptors contain a pentapeptide that acts as an additional CheR and CheB binding site. The relevance of this pentapeptide is poorly understood since pentapeptide removal from Tar/Tsr causes receptor inactivation, whereas many other chemoreceptors do not require this pentapeptide for correct function. We report here a bioinformatic analysis of pentapeptide containing chemoreceptors. These receptors were detected in 11 bacterial phyla and represent approximately 10% of all chemoreceptors. Pentapeptide containing chemoreceptors are mainly found in Gram-negative bacteria, are of low abundance in Gram-positive species and almost absent from archaea. Almost 50% of TarH (Tar homologue) ligand binding domain containing chemoreceptors possess pentapeptides, whereas chemoreceptor families with other ligand binding domains are devoid of pentapeptides. The abundance of chemoreceptors with C-terminal pentapeptides correlated negatively with the number of chemoreceptor genes per genome. The consensus sequence reveals a negative net charge for many pentapeptides. Pentapeptide containing chemoreceptors are very abundant in the order Enterobacterales, particularly in the families Pectobacterium and Dickeya, where they represent about 50% of the total number. In contrast, bacteria with primarily free living lifestyles have a reduced number of pentapeptides, such as approximately 1% for Pseudomonadales. It is proposed that pentapeptide function is related to mechanisms that permit host interaction.

摘要

化学感应通路是一种主要的原核生物信号转导机制,它基于化学感受器对信号的感知。化学感应通路的一个基本特征是CheR和CheB介导的化学感受器甲基化控制,从而导致通路适应。在其C末端延伸处,Tar和Tsr模型化学感受器含有一个五肽,该五肽作为额外的CheR和CheB结合位点。由于从Tar/Tsr中去除五肽会导致受体失活,而许多其他化学感受器正确发挥功能并不需要这种五肽,因此对这种五肽的相关性了解甚少。我们在此报告了对含有五肽的化学感受器的生物信息学分析。这些感受器在11个细菌门中被检测到,约占所有化学感受器的10%。含有五肽的化学感受器主要存在于革兰氏阴性菌中,在革兰氏阳性菌中丰度较低,在古菌中几乎不存在。几乎50%含有TarH(Tar同源物)配体结合结构域的化学感受器拥有五肽,而具有其他配体结合结构域的化学感受器家族则没有五肽。具有C末端五肽的化学感受器的丰度与每个基因组中化学感受器基因的数量呈负相关。共有序列显示许多五肽带负净电荷。含有五肽的化学感受器在肠杆菌目中非常丰富,特别是在果胶杆菌属和迪基氏菌属中,它们约占总数的50%。相比之下,主要营自由生活方式的细菌五肽数量减少,例如假单胞菌目中约为1%。有人提出五肽的功能与允许宿主相互作用的机制有关。

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