Vincent Carr D, Buscher Benjamin A, Friedman Jonathan R, Williams Lee Anne, Bardill Patrick, Vogel Joseph P
Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Bacteriol. 2006 Dec;188(23):8231-43. doi: 10.1128/JB.00937-06. Epub 2006 Sep 22.
Legionella pneumophila, a causative agent of bacterial pneumonia, survives inside phagocytic cells by avoiding rapid targeting to the lysosome. This bacterium utilizes a type IVB secretion system, encoded by the dot/icm genes, to replicate inside host cells. DotL, a critical component of the Dot/Icm secretion apparatus, functions as the type IV coupling protein. In contrast to most dot/icm genes, which are dispensable for growth on bacteriological media, dotL is required for the viability of wild-type L. pneumophila. Previously we reported that DeltadotL lethality could be suppressed by inactivation of the Dot/Icm complex via mutations in other dot/icm genes. Here we report the isolation of non-dot/icm suppressors of this phenotype. These DeltadotL suppressors include insertions that disrupt the function of the L. pneumophila homologs of cpxR, djlA, lysS, and two novel open reading frames, lpg0742 and lpg1594, that we have named ldsA and ldsB for lethality of DeltadotL suppressor. In addition to suppressing DeltadotL lethality, inactivation of these genes in a wild-type strain background causes a range of defects in L. pneumophila virulence traits, including intracellular growth, implicating these factors in the proper function of the Dot/Icm complex. Consistent with previous data showing a role for the cpx system in regulating expression of several dot/icm genes, the cpxR insertion mutant produced decreased levels of three Dot/Icm proteins, DotA, IcmV, and IcmW. The remaining four suppressors did not affect the steady-state levels of any Dot/Icm protein and are likely to represent the first identified factors necessary for assembly and/or activation of the Dot/Icm secretion complex.
嗜肺军团菌是细菌性肺炎的病原体,它通过避免被快速靶向至溶酶体而在吞噬细胞内存活。这种细菌利用由dot/icm基因编码的IVB型分泌系统在宿主细胞内复制。DotL是Dot/Icm分泌装置的关键组分,作为IV型偶联蛋白发挥作用。与大多数在细菌学培养基上生长时非必需的dot/icm基因不同,dotL对于野生型嗜肺军团菌的生存能力是必需的。此前我们报道,通过其他dot/icm基因中的突变使Dot/Icm复合体失活可抑制ΔdotL致死性。在此我们报道了该表型的非dot/icm抑制子的分离。这些ΔdotL抑制子包括破坏嗜肺军团菌cpxR、djlA、lysS同源物功能的插入突变,以及两个新的开放阅读框lpg0742和lpg1594,我们将其命名为ldsA和ldsB,代表ΔdotL抑制子的致死性。除了抑制ΔdotL致死性外,在野生型菌株背景中使这些基因失活会导致嗜肺军团菌毒力性状出现一系列缺陷,包括细胞内生长,这表明这些因子参与Dot/Icm复合体的正常功能。与之前显示cpx系统在调节几个dot/icm基因表达中起作用的数据一致,cpxR插入突变体产生的三种Dot/Icm蛋白DotA、IcmV和IcmW水平降低。其余四个抑制子不影响任何Dot/Icm蛋白的稳态水平,可能代表首次鉴定出的Dot/Icm分泌复合体组装和/或激活所必需的因子。