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Umo 蛋白和 Rcs 磷酸传递系统在奇异变形杆菌野生型和 O 抗原(waaL)突变体的群集运动中的作用。

Role of the Umo proteins and the Rcs phosphorelay in the swarming motility of the wild type and an O-antigen (waaL) mutant of Proteus mirabilis.

机构信息

Department of Microbiology and Immunology, Emory University, Atlanta, Georgia, USA.

出版信息

J Bacteriol. 2012 Feb;194(3):669-76. doi: 10.1128/JB.06047-11. Epub 2011 Dec 2.

Abstract

Proteus mirabilis is a Gram-negative bacterium that exists as a short rod when grown in liquid medium, but during growth on surfaces it undergoes a distinct physical and biochemical change that culminates in the formation of a swarmer cell. How P. mirabilis senses a surface is not fully understood; however, the inhibition of flagellar rotation and accumulation of putrescine have been proposed to be sensory mechanisms. Our lab recently isolated a transposon insertion in waaL, encoding O-antigen ligase, that resulted in a loss of swarming but not swimming motility. The waaL mutant failed to activate flhDC, the class 1 activator of the flagellar gene cascade, when grown on solid surfaces. Swarming in the waaL mutant was restored by overexpression of flhDC in trans or by a mutation in the response regulator rcsB. To further investigate the role of the Rcs signal transduction pathway and its possible relationship with O-antigen surface sensing, mutations were made in the rcsC, rcsB, rcsF, umoB (igaA), and umoD genes in wild-type and waaL backgrounds. Comparison of the swarming phenotypes of the single and double mutants and of strains overexpressing combinations of the UmoB, UmoD, and RcsF proteins demonstrated the following: (i) there is a differential effect of RcsF and UmoB on swarming in wild-type and waaL backgrounds, (ii) RcsF inhibits UmoB activity but not UmoD activity in a wild-type background, and (iii) UmoD is able to modulate activity of the Rcs system.

摘要

奇异变形杆菌是一种革兰氏阴性菌,在液体培养基中生长时呈短杆状,但在表面生长时会发生明显的物理和生化变化,最终形成游动细胞。奇异变形杆菌如何感知表面还不完全清楚;然而,已经提出抑制鞭毛旋转和腐胺积累是感应机制。我们实验室最近分离到一个转座子插入 waaL 中,该基因编码 O-抗原连接酶,导致丧失了游动但不丧失游泳运动能力。当在固体表面生长时, waaL 突变体无法激活 flhDC,即鞭毛基因级联的 1 类激活物。通过在转座子中过表达 flhDC 或通过突变响应调节剂 rcsB,在 waaL 突变体中恢复了游动。为了进一步研究 Rcs 信号转导途径的作用及其与 O-抗原表面感应的可能关系,在 waaL 和野生型背景中分别对 rcsC、rcsB、rcsF、umoB(igaA)和 umoD 基因进行了突变。比较单突变体和双突变体以及过表达 UmoB、UmoD 和 RcsF 蛋白组合的菌株的游动表型表明:(i)RcsF 和 UmoB 对 waaL 和野生型背景中的游动有不同的影响,(ii)RcsF 在野生型背景中抑制 UmoB 但不抑制 UmoD 的活性,和(iii)UmoD 能够调节 Rcs 系统的活性。

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