首页> 外文期刊>Molecular Microbiology >IpaC from Shigella and SipC from Salmonella possess similar biochemical properties but are functionally distinct.
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IpaC from Shigella and SipC from Salmonella possess similar biochemical properties but are functionally distinct.

机译:志贺氏菌属的IpaC和沙门氏菌属的SipC具有相似的生化特性,但功能不同。

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Invasion plasmid antigen C (IpaC) is secreted via the type III secretion system (TTSS) of Shigella flexneri and serves as an essential effector molecule for epithelial cell invasion. The only homologue of IpaC identified thus far is Salmonella invasion protein C (SipC/SspC), which is essential for enterocyte invasion by Salmonella typhimurium. To explore the biochemical and functional relatedness of IpaC and SipC, recombinant derivatives of both proteins were purified so that their in vitro biochemical properties could be compared. Both proteins were found to: (i) enhance the entry of wild-type S. flexneri and S. typhimurium into cultured cells; (ii) interact with phospholipid membranes; and (iii) oligomerize in solution; however, IpaC appeared to be more efficient in carrying out several of the biochemical properties examined. Overall, the data indicate that purified IpaC and SipC are biochemically similar, although not identical with respect to their in vitro activities. To extend these observations, complementation analyses were conducted using S. flexneri SF621 and S. typhimurium SB220, neither of which is capable of invading epithelial cells because of non-polar null mutations in ipaC and sipC respectively. Interestingly, both ipaC and sipC restored invasiveness to SB220 whereas only ipaC restored invasiveness to SF621, suggesting that SipC lacks an activity possessed by IpaC. This functional difference is not at the level of secretion because IpaC and SipC are both secreted by SF621 and it does not appear to be because of SipC dependency on this native chaperone as coexpression of sipC and sicA in SF621 still failed to restore detectable invasiveness. Taken together, the data suggest that IpaC and SipC differ in either their ability to be translocated into host cells or in their function as effectors of host cell invasion. Because IpaB shares significant sequence homology with the YopB translocator of Yersinia species, the ability for IpaC and SipC to associate with this protein was explored as a potential indicator of translocation function. Both proteins were found to bind to purified IpaB with an apparent dissociation constant in the nanomolar range, suggesting that they may differ with respect to effector function. Interestingly, whereas SB220 expressing sipC behaved like wild-type Salmonella, in that it remained within its membrane-bound vacuole following entry into host cells, SB220 expressing ipaC was found in the cytoplasm of host cells. This observation indicates that IpaC and SipC are responsible for a major difference in the invasion strategies of Shigella and Salmonella, that is, they escape into the host cell cytoplasm. The implications of the role of each protein's biochemistry relative to its in vivo function is discussed.
机译:侵袭质粒抗原C(IpaC)通过弗氏志贺氏菌的III型分泌系统(TTSS)分泌,并充当上皮细胞侵袭的重要效应分子。迄今为止,IpaC的唯一同源物是沙门氏菌入侵蛋白C(SipC / SspC),它对于鼠伤寒沙门氏菌入侵肠细胞至关重要。为了探索IpaC和SipC的生化和功能相关性,纯化了两种蛋白的重组衍生物,以便可以比较它们的体外生化特性。两种蛋白质均被发现:(i)增强野生型弗氏链球菌和鼠伤寒沙门氏菌进入培养细胞的能力; (ii)与磷脂膜相互作用; (iii)在溶液中低聚;然而,IpaC似乎在执行所检查的几种生化特性方面更为有效。总体而言,数据表明,纯化的IpaC和SipC在生化方面相似,尽管其体外活性不同。为了扩展这些观察结果,使用弗氏链球菌SF621和鼠伤寒沙门氏菌SB220进行了互补分析,由于ipaC和sipC的非极性无效突变,两者均不能侵袭上皮细胞。有趣的是,ipaC和sipC都恢复了对SB220的侵袭性,而只有ipaC才恢复了对SF621的侵袭性,这表明SipC缺乏IpaC拥有的活性。此功能差异不在分泌水平上,因为IpaC和SipC均由SF621分泌,这似乎不是由于SipC对这种天然伴侣的依赖性,因为SF621中sipC和sicA的共表达仍无法恢复可检测的侵袭性。两者合计,数据表明,IpaC和SipC在易位到宿主细胞的能力或作为宿主细胞入侵的效应子的功能方面有所不同。由于IpaB与耶尔森菌物种的YopB易位子具有显着的序列同源性,因此探讨了IpaC和SipC与该蛋白缔合的能力作为潜在易位功能的指标。发现这两种蛋白均以纳摩尔范围内的表观解离常数与纯化的IpaB结合,表明它们的效应子功能可能不同。有趣的是,表达SB220的sipC表现得像野生型沙门氏菌,在于进入宿主细胞后仍保留在其膜结合的液泡中,而在宿主细胞的细胞质中发现了表达SB220的ipaC。该观察结果表明,IpaC和SipC导致志贺氏菌和沙门氏菌入侵策略的主要差异,即它们逃逸到宿主细胞的细胞质中。讨论了每种蛋白质的生化作用与其体内功能有关的含义。

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