de Groot A, Koster M, Gérard-Vincent M, Gerritse G, Lazdunski A, Tommassen J, Filloux A
Laboratoire d'Ingéniérie des Systèmes Macromoléculaires, UPR9027, IBSM/CNRS, 13402 Marseille Cedex 20, France.
J Bacteriol. 2001 Feb;183(3):959-67. doi: 10.1128/JB.183.3.959-967.2001.
Pseudomonas aeruginosa and Pseudomonas alcaligenes are gram-negative bacteria that secrete proteins using the type II or general secretory pathway, which requires at least 12 xcp gene products (XcpA and XcpP to -Z). Despite strong conservation of this secretion pathway, gram-negative bacteria usually cannot secrete exoproteins from other species. Based on results obtained with Erwinia, it has been proposed that the XcpP and/or XcpQ homologs determine this secretion specificity (M. Linderberg, G. P. Salmond, and A. Collmer, Mol. Microbiol. 20:175-190, 1996). In the present study, we report that XcpP and XcpQ of P. alcaligenes could not substitute for their respective P. aeruginosa counterparts. However, these complementation failures could not be correlated to species-specific recognition of exoproteins, since these bacteria could secrete exoproteins of each other. Moreover, when P. alcaligenes xcpP and xcpQ were expressed simultaneously in a P. aeruginosa xcpPQ deletion mutant, complementation was observed, albeit only on agar plates and not in liquid cultures. After growth in liquid culture the heat-stable P. alcaligenes XcpQ multimers were not detected, whereas monomers were clearly visible. Together, our results indicate that the assembly of a functional Xcp machinery requires species-specific interactions between XcpP and XcpQ and between XcpP or XcpQ and another, as yet uncharacterized component(s).
铜绿假单胞菌和产碱假单胞菌是革兰氏阴性菌,它们利用II型或一般分泌途径分泌蛋白质,该途径至少需要12种xcp基因产物(XcpA和XcpP至-Z)。尽管这种分泌途径具有很强的保守性,但革兰氏阴性菌通常不能分泌其他物种的外蛋白。基于欧文氏菌的研究结果,有人提出XcpP和/或XcpQ同源物决定了这种分泌特异性(M. Linderberg、G. P. Salmond和A. Collmer,《分子微生物学》20:175 - 190,1996年)。在本研究中,我们报告产碱假单胞菌的XcpP和XcpQ不能替代其各自的铜绿假单胞菌对应物。然而,这些互补失败与外蛋白的物种特异性识别无关,因为这些细菌可以相互分泌外蛋白。此外,当产碱假单胞菌的xcpP和xcpQ在铜绿假单胞菌xcpPQ缺失突变体中同时表达时,观察到了互补,尽管仅在琼脂平板上而非液体培养物中。在液体培养中生长后,未检测到产碱假单胞菌热稳定的XcpQ多聚体,而单体清晰可见。总之,我们的结果表明,功能性Xcp机制的组装需要XcpP和XcpQ之间以及XcpP或XcpQ与另一种尚未鉴定的成分之间的物种特异性相互作用。