Huang Bixing, Whitchurch Cynthia B, Mattick John S
Institute for Molecular Bioscience, University of Queensland, Brisbane, QLD 4072, Australia.
J Bacteriol. 2003 Dec;185(24):7068-76. doi: 10.1128/JB.185.24.7068-7076.2003.
Twitching motility is a form of surface translocation mediated by the extension, tethering, and retraction of type IV pili. Three independent Tn5-B21 mutations of Pseudomonas aeruginosa with reduced twitching motility were identified in a new locus which encodes a predicted protein of unknown function annotated PA4959 in the P. aeruginosa genome sequence. Complementation of these mutants with the wild-type PA4959 gene, which we designated fimX, restored normal twitching motility. fimX mutants were found to express normal levels of pilin and remained sensitive to pilus-specific bacteriophages, but they exhibited very low levels of surface pili, suggesting that normal pilus function was impaired. The fimX gene product has a molecular weight of 76,000 and contains four predicted domains that are commonly found in signal transduction proteins: a putative response regulator (CheY-like) domain, a PAS-PAC domain (commonly involved in environmental sensing), and DUF1 (or GGDEF) and DUF2 (or EAL) domains, which are thought to be involved in cyclic di-GMP metabolism. Red fluorescent protein fusion experiments showed that FimX is located at one pole of the cell via sequences adjacent to its CheY-like domain. Twitching motility in fimX mutants was found to respond relatively normally to a range of environmental factors but could not be stimulated by tryptone and mucin. These data suggest that fimX is involved in the regulation of twitching motility in response to environmental cues.
颤动运动是由IV型菌毛的伸展、系留和收缩介导的一种表面移位形式。在一个新的基因座中鉴定出了铜绿假单胞菌的三个独立的Tn5-B21突变体,它们的颤动运动减弱,该基因座编码一种预测功能未知的蛋白质,在铜绿假单胞菌基因组序列中注释为PA4959。用我们命名为fimX的野生型PA4959基因对这些突变体进行互补,恢复了正常的颤动运动。发现fimX突变体表达正常水平的菌毛蛋白,并且对菌毛特异性噬菌体仍敏感,但它们表现出极低水平的表面菌毛,表明正常的菌毛功能受损。fimX基因产物的分子量为76,000,包含信号转导蛋白中常见的四个预测结构域:一个假定的应答调节子(CheY样)结构域、一个PAS-PAC结构域(通常参与环境感知)以及DUF1(或GGDEF)和DUF2(或EAL)结构域,它们被认为参与环二鸟苷酸代谢。红色荧光蛋白融合实验表明,FimX通过与其CheY样结构域相邻的序列位于细胞的一极。发现fimX突变体中的颤动运动对一系列环境因素的反应相对正常,但不能被胰蛋白胨和粘蛋白刺激。这些数据表明,fimX参与了对环境线索的颤动运动调节。