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Mechanistic insight into the conserved allosteric regulation of periplasmic proteolysis by the signaling molecule cyclic-di-GMP.

Elife.. 2014-09;  3:e03650
D Chatterjee, RB Cooley, CD Boyd, RA Mehl, O'Toole GA, Sondermann H. Department of Molecular Medicine, College of Veterinary Medicine, Cornell University, Ithaca, United States.
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摘要

Stable surface adhesion of cells is one of the early pivotal steps in bacterial biofilm formation, a prevalent adaptation strategy in response to changing environments. In Pseudomonas fluorescens, this process is regulated by the Lap system and the second messenger cyclic-di-GMP. High cytoplasmic levels of cyclic-di-GMP activate the transmembrane receptor LapD that in turn recruits the periplasmic protease LapG, preventing it from cleaving a cell surface-bound adhesin, thereby promoting cell adhesion. In this study, we elucidate the molecular basis of LapG regulation by LapD and reveal a remarkably sensitive switching mechanism that is controlled by LapD's HAMP domain. LapD appears to act as a coincidence ... More

关键词

bacterial pathogens; biofilm formation; c-di-GMP; cell adhesion; signaling; transmembrane protein