Structural and functional insights into a quorum-sensing signal peptide receptor, the ComD histidine protein kinase of streptococcus mutans

Xiaolin Tian, Yung-Hua Li
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Abstract

Quorum sensing activation by signal peptide pheromones (SP) in Gram-positive bacteria depends on a membrane-associated histidine kinase receptor, which senses the signal and triggers the signaling cascade for various cell density-dependent activities. However, relatively little is known of peptide pheromone-receptor interactions in these bacteria, largely because of technical challenges in working with membrane-associated proteins in these bacteria. Recently, we have described a genetic approach and several analysis methods to studying membrane topology and structure-function interaction of a quorum sensing pheromone receptor ComD in a Gram-positive bacterium Streptococcus mutans . Using these methods, we confirm that the membrane-spanning domain of the ComD protein forms six transmembrane segments and three extracellular loops, loopA, loopB and loopC. By mutational analyses of these three extracellular loops, we demonstrate that both loopC and loopB are required for signal recognition and quorum sensing activation, while loopA plays little role in signal detection. In particular, a deletion or substitution mutation of four residues NVIP within loopC abolishes signal recognition for quorum sensing activation. Consistent with these findings, the loopC and loopB mutants are completely or partially defective in bacteriocin production. We conclude that both loopC and loopB are required to form the signal peptide receptor and the residues NVIP of loopC are essential for signal recognition and quorum sensing activation in S. mutans .
变异链球菌群体感应信号肽受体ComD组氨酸蛋白激酶的结构和功能研究
在革兰氏阳性细菌中,信号肽信息素(SP)的群体感应激活依赖于膜相关的组氨酸激酶受体,该受体感知信号并触发各种细胞密度依赖性活动的信号级联。然而,对这些细菌中肽信息素受体相互作用的了解相对较少,主要是因为在这些细菌中处理膜相关蛋白的技术挑战。最近,我们描述了一种遗传方法和几种分析方法来研究革兰氏阳性细菌变形链球菌群体感应信息素受体ComD的膜拓扑结构和结构-功能相互作用。通过这些方法,我们证实了ComD蛋白的跨膜结构域形成6个跨膜片段和3个细胞外环,环a,环b和环c。通过对这三个细胞外环的突变分析,我们发现loopC和loopB都是信号识别和群体感应激活所必需的,而loopA在信号检测中起不到什么作用。特别是,环c中四个残基NVIP的缺失或替换突变取消了群体感应激活的信号识别。与这些发现一致,loopC和loopB突变体在细菌素的产生中完全或部分有缺陷。我们得出结论,loopC和loopB都是形成信号肽受体所必需的,并且loopC的残基NVIP对于突变链球菌的信号识别和群体感应激活至关重要。
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