Effect of Propionate on Citrobacter rodentium Infection in Mice by Regulating NleH Expression

Yingying Li, Wenjie Mei, Qinhan Zhang, Li Li, Qiaorong Ji
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Abstract

Propionate is one of the main short chain fatty acids in the gut. Previously, we found that propionate significantly down-regulated the expression of NleH. NleH is a virulence effector secreted by Citrobacter rodentium (C. rodentium, C.r.) and is essential for its intestinal colonisation and infection. Therefore, this study intends to explore the effect and mechanism of propionate on C.r. infection by regulating the expression of NleH. Wild-type C.r. and its NleH mutant (C.r.△NleH), E.coli and its NleH1 mutant (E.coli△NleH1) were co-cultured with propionate separately, changes in strain growth and invasion adhesion were detected. Meanwhile, C57BL/6J mice were infected with C.r. and C.r.△NleH to establish animal model, and propionate intervention was given. Through detecting the invasive and infectious ability of strains in mice and the changes related to colon inflammation, to analyse the effect of propionate on C.r. infection by regulating NleH expression. The results showed that propionate can reduce the adhesion of C.r. and intestinal damage by down-regulating NleH expression, meanwhile changes of microbial functional metabolism enhance the resistance to C.r. infection in mice.

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丙酸盐通过调节 NleH 的表达对小鼠鼠类柠檬酸杆菌感染的影响
丙酸是肠道中主要的短链脂肪酸之一。此前,我们发现丙酸盐能显著下调 NleH 的表达。NleH 是棒状杆菌(C. rodentium,C.r.)分泌的毒力效应物质,对其肠道定植和感染至关重要。因此,本研究旨在通过调节 NleH 的表达,探讨丙酸盐对 C.r. 感染的影响和机制。分别将野生型C.r.及其NleH突变体(C.r.△NleH)、大肠杆菌及其NleH1突变体(E.coli△NleH1)与丙酸盐进行共培养,检测菌株生长和侵袭粘附的变化。同时,用C.r.和C.r.△NleH感染C57BL/6J小鼠建立动物模型,并给予丙酸盐干预。通过检测菌株对小鼠的侵袭和感染能力以及结肠炎症的相关变化,分析丙酸盐通过调节NleH表达对C.r.感染的影响。结果表明,丙酸盐可通过下调NleH的表达来减少C.r.的粘附和肠道损伤,同时微生物功能代谢的变化可增强小鼠对C.r.感染的抵抗力。
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期刊介绍: The Journal of Cellular and Molecular Medicine serves as a bridge between physiology and cellular medicine, as well as molecular biology and molecular therapeutics. With a 20-year history, the journal adopts an interdisciplinary approach to showcase innovative discoveries. It publishes research aimed at advancing the collective understanding of the cellular and molecular mechanisms underlying diseases. The journal emphasizes translational studies that translate this knowledge into therapeutic strategies. Being fully open access, the journal is accessible to all readers.
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