Dale Colin, Jones Tait, Pontes Mauricio
Department of Biology, University of Utah, Salt Lake City, USA.
Mol Biol Evol. 2005 Mar;22(3):758-66. doi: 10.1093/molbev/msi061. Epub 2004 Dec 1.
Sodalis glossinidius, a maternally transmitted endosymbiont of tsetse flies, maintains two phylogenetically distinct type-III secretion systems encoded by chromosomal symbiosis regions designated SSR-1 and SSR-2. Although both symbiosis regions are closely related to extant pathogenicity islands with similar gene inventories, SSR-2 has undergone novel degenerative adaptations in the transition to mutualism. Notably, SSR-2 lacks homologs of genes found in SSR-1 that encode secreted effector proteins known to facilitate the host cell cytoskeletal rearrangements necessary for bacterial entry and uptake into eukaryotic cells. Also, as a result of relaxed selection, SSR-2 has undergone inactivation of genes encoding components of the type-III secretion system needle substructure. In the current study, we used quantitative PCR to determine the expression profiles of ysaV (SSR-1) and invA (SSR-2) transcripts when S. glossinidius infects an insect cell line, and we used an invasion assay to characterize the phenotype of an S. glossinidius mutant that lacks the ability to produce an OrgA protein that is required for function of the SSR-2 secretome. Whereas SSR-1 is required for bacterial invasion of host cells and ysaV is expressed when bacteria contact host cells, SSR-2 is required for bacterial proliferation after entry, and invA is only expressed in the intracellular stage of infection. These results demonstrate that degenerative genetic adaptations in SSR-2 have promoted functional diversification of the Sodalis SSR-2 type-III secretion system.
嗜蝇 Sodalis glossinidius 是采采蝇的一种母系传播内共生菌,它维持着由染色体共生区域 SSR - 1 和 SSR - 2 编码的两个系统发育上不同的 III 型分泌系统。尽管这两个共生区域都与现存的具有相似基因库的致病岛密切相关,但 SSR - 2 在向共生关系转变的过程中经历了新的退化性适应。值得注意的是,SSR - 2 缺乏 SSR - 1 中发现的一些基因的同源物,这些基因编码已知有助于细菌进入和摄取到真核细胞中所需的宿主细胞细胞骨架重排的分泌效应蛋白。此外,由于选择压力的放松,SSR - 2 中编码 III 型分泌系统针状亚结构成分的基因已经失活。在本研究中,我们使用定量 PCR 来确定当嗜蝇 Sodalis glossinidius 感染昆虫细胞系时 ysaV(SSR - 1)和 invA(SSR - 2)转录本的表达谱,并且我们使用侵袭试验来表征一个嗜蝇 Sodalis glossinidius 突变体的表型,该突变体缺乏产生 SSR - 2 分泌蛋白组功能所需的 OrgA 蛋白的能力。虽然 SSR - 1 是细菌侵入宿主细胞所必需的,并且当细菌接触宿主细胞时 ysaV 会表达,但 SSR - 2 是细菌进入后增殖所必需的,并且 invA 仅在感染的细胞内阶段表达。这些结果表明,SSR - 2 中的退化性遗传适应促进了嗜蝇 Sodalis SSR - 2 III 型分泌系统的功能多样化。