Heat-labile enterotoxin (LT), the major virulence factor of enterotoxigenic Escherichia coli (ETEC), can lead to severe diarrhea and promotes ETEC adherence to intestinal epithelial cells. Most previous in vitro studies focused on ETEC pathogenesis were conducted under aerobic conditions, which do not reflect the real situation of ETEC infection because the intestine is anoxic. In this study, the expression and secretion of LT under anaerobic or microaerobic conditions were determined; LT was not efficiently secreted into the supernatant under anaerobic or microaerobic conditions unless terminal electron acceptors (trimethylamine N-oxide dihydrate [TMAO] or nitrate) were available. Furthermore, we found that the restoration effects of TMAO and nitrate on LT secretion could be inhibited by amytal or ΔtorCAD and ΔnarG E. coli strains, indicating that LT secretion under anaerobic conditions was dependent on the integrity of the respiratory chain. At the same time, electron acceptors increase the ATP level of ETEC, but this increase was not the main reason for LT secretion. Subsequently, the relationship between the integrity of the respiratory chain and the function of the type II secretion system was determined. The GspD protein, the secretin of ETEC, was assembled under anaerobic conditions and was accompanied by LT secretion when TMAO or nitrate was added. Our data also demonstrated that TMAO and nitrate could not induce the GspD assembly and LT secretion in ΔtorCAD and ΔnarG strains, respectively. Moreover, GspD assembly under anaerobic conditions was assisted by the pilot protein YghG.

译文

不耐热肠毒素 (LT) 是产肠毒素大肠杆菌 (ETEC) 的主要毒力因子,可导致严重腹泻并促进ETEC粘附于肠上皮细胞。以前大多数针对ETEC发病机理的体外研究都是在有氧条件下进行的,由于肠道是缺氧的,因此无法反映ETEC感染的真实情况。在这项研究中,确定了在厌氧或微需氧条件下LT的表达和分泌; 除非有末端电子受体 (三甲胺N-氧化物二水合物 [TMAO] 或硝酸盐),否则在厌氧或微需氧条件下LT不能有效地分泌到上清液中。此外,我们发现TMAO和硝酸盐对LT分泌的恢复作用可以被amytal或 Δ torcad和 Δ narg大肠杆菌菌株抑制,表明厌氧条件下的LT分泌取决于呼吸链的完整性。同时,电子受体增加了ETEC的ATP水平,但这种增加不是LT分泌的主要原因。随后,确定了呼吸链的完整性与II型分泌系统功能之间的关系。GspD蛋白 (ETEC的分泌素) 在厌氧条件下组装,并在添加TMAO或硝酸盐时伴随着LT分泌。我们的数据还表明,TMAO和硝酸盐分别不能诱导 Δ torcad和 Δ narg菌株中的GspD组装和LT分泌。此外,在厌氧条件下,GspD组装由先导蛋白YghG协助。

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