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The Not so Good, the Bad and the Ugly: Differential Bacterial Adhesion and Invasion Mediated by Salmonella PagN Allelic Variants

机译:不太好,坏和丑陋的:差异细菌粘附和由沙门氏菌Pagn等位基因变异介导的侵袭

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摘要

While advances in genomic sequencing have highlighted significant strain variability between and within Salmonella serovars, only a few protein variants have been directly related to evolutionary adaptation for survival, such as host specificity or differential virulence. The current study investigated whether allelic variation of the Salmonella adhesin/invasin PagN influences bacterial interaction with their receptors. The Salmonella enterica, subspecies enterica serovar Typhi (S. Typhi) allelic variant of PagN was found to bind significantly better to different enterocytes as well as to the extracellular matrix protein laminin than did the major Salmonella enterica, subspecies enterica serovar Typhimurium (S. Typhimurium) allele. The two alleles differed at amino acid residues 49 and 109 in two of the four predicted PagN surface loops, and residue substitution analysis revealed that a glutamic acid at residue 49 increased the adhesive and invasive properties of S. Typhi PagN. PagN sequence comparisons from 542 Salmonella strains for six representative S. enterica serovars and S. diarizonae further supported the role of glutamic acid at residues 49 and 109 in optimizing adhesion to cells and laminin, as well as for cell invasion. In summary, this study characterized unique residues in allelic variants of a virulence factor that participates in the colonization and invasive properties of different Salmonella stains, subspecies and serovars.
机译:虽然基因组测序的进展突出了沙门氏菌血清素之间和内部的显着菌株变异性,但只有少数蛋白质变体与进化的存活调整直接相关,例如宿主特异性或差异毒力。目前的研究研究了沙门氏菌粘附/侵入素PAGN的等位基因变异是否影响了与其受体的细菌相互作用。 Salmonella肠道,亚种Enterica Serovar Typhi(S. Typhi)的PAGN的等位基因变体对不同的肠细胞和细胞外基质蛋白层比主要的沙门氏菌肠道,巢穴肠道血鼠(S. Typhimurium)(S. Typhimurium)(S. typhimurium等位基因。两位等位基因在四个预测的PAGN表面环中两种中的两个等位基因不同于氨基酸残基49和109,并且残留物取代分析显示残余物49的谷氨酸增加了S. Typhi Pagn的粘合剂和侵袭性。 PAGN序列比较来自542个Salmonella菌株的六种代表性S.肠道塞洛维拉和S.eyrizonae进一步支持谷氨酸在残留物49和109中的作用,优化对细胞和层粘连蛋白的粘附性,以及细胞侵袭。总之,该研究表征了一种具有毒力因子的等位基因变体的独特残留,其参与不同沙门氏菌污渍,亚种和塞洛维拉的殖民化和侵袭性。

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