Bile salts and alkaline pHreciprocally modulate the interaction between the periplasmic domains ofVibrio choleraeToxRandToxS

周质间隙 霍乱弧菌 生物 蛋白质水解 生物化学 跨膜蛋白 细胞生物学 受体 细菌 大肠杆菌 基因 遗传学
作者
Charles R. Midgett,Salvador Almagro‐Moreno,Maria Pellegrini,Ronald K. Taylor,Karen Skorupski,F. Jon Kull
出处
期刊:Molecular Microbiology [Wiley]
卷期号:105 (2): 258-272 被引量:44
标识
DOI:10.1111/mmi.13699
摘要

Summary ToxR is a transmembrane transcription factor that is essential for virulence gene expression and human colonization by Vibrio cholerae . ToxR requires its operon partner ToxS, a periplasmic integral membrane protein, for full activity. These two proteins are thought to interact through their respective periplasmic domains, ToxRp and ToxSp. In addition, ToxR is thought to be responsive to various environmental cues, such as bile salts and alkaline pH, but how these factors influence ToxR is not yet understood. Using NMR and reciprocal pull down assays, we present the first direct evidence that ToxR and ToxS physically interact. Furthermore, using NMR and DSF, it was shown that the bile salts cholate and chenodeoxycholate interact with purified ToxRp and destabilize it. Surprisingly, bile salt destabilization of ToxRp enhanced the interaction between ToxRp and ToxSp. In contrast, alkaline pH, which is one of the factors that leads to ToxR proteolysis, decreased the interaction between ToxRp and ToxSp. Taken together, these data suggest a model whereby bile salts or other detergents destabilize ToxR, increasing its interaction with ToxS to promote full ToxR activity. Subsequently, as V. cholerae alkalinizes its environment in late stationary phase, the interaction between the two proteins decreases, allowing ToxR proteolysis to proceed.

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