Matsuyama Bruno Y, Krasteva Petya V, Baraquet Claudine, Harwood Caroline S, Sondermann Holger, Navarro Marcos V A S
Departamento de Física e Ciência Interdisciplinar, Instituto de Física de São Carlos, Universidade de São Paulo, São Carlos 13563-120, SP, Brazil;
Department of Structural Biology and Chemistry, Unité G5 Biologie Structurale de la Sécrétion Bactérienne and UMR 3528, CNRS, Institut Pasteur, 75015 Paris, France; Department of Molecular Medicine, College of Veterinary Medicine, Cornell University, Ithaca, NY 14853;
Proc Natl Acad Sci U S A. 2016 Jan 12;113(2):E209-18. doi: 10.1073/pnas.1523148113. Epub 2015 Dec 28.
Bacterial biofilm formation during chronic infections confers increased fitness, antibiotic tolerance, and cytotoxicity. In many pathogens, the transition from a planktonic lifestyle to collaborative, sessile biofilms represents a regulated process orchestrated by the intracellular second-messenger c-di-GMP. A main effector for c-di-GMP signaling in the opportunistic pathogen Pseudomonas aeruginosa is the transcription regulator FleQ. FleQ is a bacterial enhancer-binding protein (bEBP) with a central AAA+ ATPase σ(54)-interaction domain, flanked by a C-terminal helix-turn-helix DNA-binding motif and a divergent N-terminal receiver domain. Together with a second ATPase, FleN, FleQ regulates the expression of flagellar and exopolysaccharide biosynthesis genes in response to cellular c-di-GMP. Here we report structural and functional data that reveal an unexpected mode of c-di-GMP recognition that is associated with major conformational rearrangements in FleQ. Crystal structures of FleQ's AAA+ ATPase domain in its apo-state or bound to ADP or ATP-γ-S show conformations reminiscent of the activated ring-shaped assemblies of other bEBPs. As revealed by the structure of c-di-GMP-complexed FleQ, the second messenger interacts with the AAA+ ATPase domain at a site distinct from the ATP binding pocket. c-di-GMP interaction leads to active site obstruction, hexameric ring destabilization, and discrete quaternary structure transitions. Solution and cell-based studies confirm coupling of the ATPase active site and c-di-GMP binding, as well as the functional significance of crystallographic interprotomer interfaces. Taken together, our data offer unprecedented insight into conserved regulatory mechanisms of gene expression under direct c-di-GMP control via FleQ and FleQ-like bEBPs.
慢性感染期间细菌生物膜的形成赋予了细菌更强的适应性、抗生素耐受性和细胞毒性。在许多病原体中,从浮游生活方式向协作性、固着性生物膜的转变是一个由细胞内第二信使环二鸟苷酸(c-di-GMP)精心调控的过程。在机会致病菌铜绿假单胞菌中,c-di-GMP信号传导的一个主要效应器是转录调节因子FleQ。FleQ是一种细菌增强子结合蛋白(bEBP),具有一个位于中央的AAA+ ATP酶σ(54)相互作用结构域,两侧分别是一个C端螺旋-转角-螺旋DNA结合基序和一个不同的N端受体结构域。FleQ与另一种ATP酶FleN一起,响应细胞内的c-di-GMP调节鞭毛和胞外多糖生物合成基因的表达。在此,我们报告了结构和功能数据,这些数据揭示了一种意想不到的c-di-GMP识别模式,该模式与FleQ中的主要构象重排有关。FleQ的AAA+ ATP酶结构域在其空载状态或与ADP或ATP-γ-S结合时的晶体结构显示出与其他bEBPs的活化环状组装体相似的构象。正如与c-di-GMP复合的FleQ结构所揭示的那样,第二信使在一个与ATP结合口袋不同的位点与AAA+ ATP酶结构域相互作用。c-di-GMP相互作用导致活性位点受阻、六聚体环不稳定以及离散的四级结构转变。基于溶液和细胞的研究证实了ATP酶活性位点与c-di-GMP结合的偶联,以及晶体学中蛋白间界面的功能意义。综上所述,我们的数据为通过FleQ和FleQ样bEBPs在c-di-GMP直接控制下的基因表达保守调控机制提供了前所未有的见解。