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首页> 外文期刊>Journal of bacteriology >Identification of Non-dot/icm Suppressors of the Legionella pneumophila ΔdotL Lethality Phenotype
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Identification of Non-dot/icm Suppressors of the Legionella pneumophila ΔdotL Lethality Phenotype

机译:肺炎军团菌非点/ icm抑制子ΔdotL致死表型的鉴定

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摘要

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 ΔdotL 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 ΔdotL 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 ΔdotL suppressor. In addition to suppressing ΔdotL 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.
机译:细菌性肺炎的致病菌 Legionella pneumophila 通过避免快速靶向溶酶体而在吞噬细胞内存活。这种细菌利用 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分泌装置的重要组成部分,起着IV型偶联蛋白的作用。与大多数 dot / icm 基因不同,这些基因对于在细菌培养基上生长是必不可少的,而 dotL 对于野生型 L的生存力是必需的。肺炎。先前我们曾报道,通过其他 dot / icm 基因的突变使Dot / Icm复合物失活,可以抑制Δ dotL 的致死性。在这里,我们报告了这种表型的非 dot / icm 抑制子的隔离。这些Δ dotL 抑制子包括干扰 L功能的插入物。 cpxR djlA lysS 的嗜肺菌同源物,以及两个新颖的开放阅读框lpg0742和lpg1594,我们将其命名为< em> ldsA ldsB 表示Δ dotL s 抑制子的 l 族。除了抑制Δ dotL 致死性外,在野生型菌株背景中这些基因的失活还会导致 L中的一系列缺陷。肺炎嗜血杆菌的毒力特征,包括细胞内生长,将这些因素牵连到Dot / Icm复合体的正常功能中。与先前的数据表明 cpx 系统在调节多个 dot / icm 基因表达中的作用一致, cpxR 插入突变体导致降低的三种Dot / Icm蛋白,DotA,IcmV和IcmW。其余的四个抑制剂不影响任何Dot / Icm蛋白的稳态水平,并且很可能代表了组装和/或激活Dot / Icm分泌复合物所必需的第一个鉴定因子。

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