首页> 外文期刊>Archives of microbiology >Role of anionic charges of osmoregulated periplasmic glucans of Salmonella enterica serovar Typhimurium SL1344 in mice virulence.
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Role of anionic charges of osmoregulated periplasmic glucans of Salmonella enterica serovar Typhimurium SL1344 in mice virulence.

机译:渗透压的肠沙门氏菌血清型鼠伤寒沙门氏菌SL1344的周质葡聚糖的负电荷在小鼠毒性中的作用。

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摘要

opgB gene of Salmonella enterica serovar Typhimurium was identified earlier in a genome-wide screen for mice virulence (Valentine et al. in Infect Immun 66:3378-3383, 1998). Although mutation in opgB resulted in avirulent Salmonella strain, how this gene contributes to pathogenesis remains unclear. Based on DNA homology, opgB is predicted to be responsible for adding phosphoglycerate residues to osmoregulated periplasmic glucans (OPGs) giving them anionic characteristics. In Escherichia coli, yet another gene, opgC, is also reported to contribute to anionic characteristics of OPGs by adding succinic acid residues. We constructed opgB, opgC, and opgBC double mutants of S. enterica serovar Typhimurium strain SL1344. As predicted opgBC mutant synthesized neutral OPGs that were devoid of any anionic substituents. However, opgB, opgC, and opgBC mutations had no significant impact on mice virulence as well as on competitive organ colonization. In low osmotic conditions, opgB, opgC, and opgBC mutants exhibited delay in growth initiation in the presence of sodium deoxycholate. Anionic substituents of OPGs from Salmonella although appear to be needed to overcome resistance of deoxycholate in hypoosmotic growth media, no evidence was found for their role in mice virulence.
机译:肠炎沙门氏菌鼠伤寒沙门氏菌的opgB基因是在对小鼠毒性的全基因组筛选中较早鉴定的(Valentine等,Infect Immun 66:3378-3383,1998)。尽管opgB突变导致无毒沙门氏菌菌株,但该基因如何促进发病机理仍不清楚。基于DNA同源性,预测opgB负责将磷酸甘油酯残基添加到渗透压化的周质葡聚糖(OPG)中,从而赋予它们阴离子特性。在大肠杆菌中,据报道还有另一种基因opgC通过添加琥珀酸残基有助于OPG的阴离子特性。我们构建了肠球菌血清鼠伤寒沙门氏菌菌株SL1344的opgB,opgC和opgBC双突变体。如预测的那样,opgBC突变体合成了不含任何阴离子取代基的中性OPG。但是,opgB,opgC和opgBC突变对小鼠的毒力以及竞争性器官定植没有显着影响。在低渗透条件下,存在脱氧胆酸钠的情况下,opgB,opgC和opgBC突变体显示出生长起始延迟。沙门氏菌OPG的阴离子取代基虽然似乎需要克服低渗生长培养基中脱氧胆酸盐的抗性,但尚未发现它们在小鼠毒性中的作用。

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