Department of Biochemistry and Biophysics, University of California, San Francisco, CA 94143, USA.
J Bacteriol. 2010 Feb;192(4):994-1010. doi: 10.1128/JB.01390-09. Epub 2009 Dec 11.
The virulence of the opportunistic pathogen Pseudomonas aeruginosa involves the coordinate expression of many virulence factors, including type IV pili, which are required for colonization of host tissues and for twitching motility. Type IV pilus function is controlled in part by the Chp chemosensory system, which includes a histidine kinase, ChpA, and two CheY-like response regulators, PilG and PilH. How the Chp components interface with the type IV pilus motor proteins PilB, PilT, and PilU is unknown. We present genetic evidence confirming the role of ChpA, PilG, and PilB in the regulation of pilus extension and the role of PilH and PilT in regulating pilus retraction. Using informative double and triple mutants, we show that (i) ChpA, PilG, and PilB function upstream of PilH, PilT, and PilU; (ii) that PilH enhances PilT function; and (iii) that PilT and PilB retain some activity in the absence of signaling input from components of the Chp system. By site-directed mutagenesis, we demonstrate that the histidine kinase domain of ChpA and the phosphoacceptor sites of both PilG and PilH are required for type IV pilus function, suggesting that they form a phosphorelay system important in the regulation of pilus extension and retraction. Finally, we present evidence suggesting that pilA transcription is regulated by intracellular PilA levels. We show that PilA is a negative regulator of pilA transcription in P. aeruginosa and that the Chp system functionally regulates pilA transcription by controlling PilA import and export.
机会性病原体铜绿假单胞菌的毒力涉及许多毒力因子的协调表达,包括 IV 型菌毛,这对于宿主组织的定植和蠕动运动是必需的。IV 型菌毛的功能部分受 Chp 化学感觉系统的控制,该系统包括一个组氨酸激酶 ChpA 和两个 CheY 样响应调节剂 PilG 和 PilH。Chp 组件如何与 IV 型菌毛马达蛋白 PilB、PilT 和 PilU 相互作用尚不清楚。我们提供了遗传证据,证实了 ChpA、PilG 和 PilB 在调节菌毛延伸中的作用,以及 PilH 和 PilT 在调节菌毛缩回中的作用。使用信息丰富的双突变体和三突变体,我们表明:(i)ChpA、PilG 和 PilB 在 PilH、PilT 和 PilU 之前起作用;(ii)PilH 增强了 PilT 的功能;(iii)在没有 Chp 系统组件发出信号的情况下,PilT 和 PilB 仍然保留一些活性。通过定点突变,我们证明 ChpA 的组氨酸激酶结构域以及 PilG 和 PilH 的磷酸受体位点都是 IV 型菌毛功能所必需的,这表明它们形成了一个在调节菌毛延伸和缩回中很重要的磷酸传递系统。最后,我们提供了证据表明 pilA 转录受细胞内 PilA 水平的调节。我们表明 PilA 是铜绿假单胞菌中 pilA 转录的负调节剂,并且 Chp 系统通过控制 PilA 的输入和输出来功能性地调节 pilA 转录。