Department of Microbiology and Immunology, Brody School of Medicine, East Carolina University, Greenville, NC 27834, USA.
Infect Immun. 2011 May;79(5):1815-25. doi: 10.1128/IAI.00075-11. Epub 2011 Feb 28.
The cyclic-dimeric-GMP (c-di-GMP)-binding protein PilZ has been implicated in bacterial motility and pathogenesis. Although BB0733 (PlzA), the only PilZ domain-containing protein in Borrelia burgdorferi, was reported to bind c-di-GMP, neither its role in motility or virulence nor it's affinity for c-di-GMP has been reported. We determined that PlzA specifically binds c-di-GMP with high affinity (dissociation constant [K(d)], 1.25 μM), consistent with K(d) values reported for c-di-GMP-binding proteins from other bacteria. Inactivation of the monocistronically transcribed plzA resulted in an opaque/solid colony morphology, whereas the wild-type colonies were translucent. While the swimming pattern of mutant cells appeared normal, on swarm plates, mutant cells exhibited a significantly reduced swarm diameter, demonstrating a role of plzA in motility. Furthermore, the plzA mutant cells were significantly less infectious in experimental mice (as determined by 50% infectious dose [ID(50)]) relative to wild-type spirochetes. The mutant also had survival rates in fed ticks lower than those of the wild type. Consequently, plzA mutant cells failed to complete the mouse-tick-mouse infection cycle, indicating plzA is essential for the enzootic life cycle of B. burgdorferi. All of these defects were corrected when the mutant was complemented in cis. We propose that failure of plzA mutant cells to infect mice was due to altered motility; however, the possibility that an unidentified factor(s) contributed to interruption of the B. burgdorferi enzootic life cycle cannot yet be excluded.
环二鸟苷酸(c-di-GMP)结合蛋白 PilZ 已被牵涉到细菌的运动性和致病性中。虽然博莱霉素 burgdorferi 中唯一含有 PilZ 结构域的蛋白 BB0733(PlzA)被报道能结合 c-di-GMP,但它在运动性或毒力中的作用及其与 c-di-GMP 的亲和力均尚未报道。我们确定 PlzA 能特异性地以高亲和力(解离常数 [K(d)],1.25 μM)结合 c-di-GMP,这与其他细菌的 c-di-GMP 结合蛋白的 K(d) 值一致。单顺反子转录的 plzA 的失活导致不透明/固体菌落形态,而野生型菌落则是半透明的。虽然突变细胞的泳动模式似乎正常,但在群集平板上,突变细胞的群集直径明显减小,表明 plzA 在运动性中起作用。此外,与野生型旋体相比,plzA 突变细胞在实验小鼠中的感染性明显降低(通过 50%感染剂量 [ID(50)] 确定)。突变体在喂食的蜱中的存活率也低于野生型。因此,plzA 突变细胞未能完成小鼠-蜱-小鼠感染循环,表明 plzA 是博莱霉素 burgdorferi 自然循环所必需的。当突变体在顺式中互补时,所有这些缺陷都得到了纠正。我们提出,plzA 突变细胞未能感染小鼠是由于运动性改变所致;然而,不能排除未鉴定的因素(s)中断博莱霉素 burgdorferi 自然循环的可能性。