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首页> 外文期刊>Infection and immunity >Intestinal Alkaline Phosphatase Deficiency Leads to Lipopolysaccharide Desensitization and Faster Weight Gain
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Intestinal Alkaline Phosphatase Deficiency Leads to Lipopolysaccharide Desensitization and Faster Weight Gain

机译:肠道碱性磷酸酶缺乏症导致脂多糖脱敏和体重增加较快

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Animals develop in the presence of complex microbial communities, and early host responses to these microbes can influence key aspects of development, such as maturation of the immune system, in ways that impact adult physiology. We previously showed that the zebrafish intestinal alkaline phosphatase (ALPI) gene alpi.1 was induced by Gram-negative bacterium-derived lipopolysaccharide (LPS), a process dependent on myeloid differentiation primary response gene 88 (MYD88), and functioned to detoxify LPS and prevent excessive host inflammatory responses to commensal microbiota in the newly colonized intestine. In the present study, we examined whether the regulation and function of ALPI were conserved in mammals. We found that among the mouse ALPI genes, Akp3 was specifically upregulated by the microbiota, but through a mechanism independent of LPS or MYD88. We showed that disruption of Akp3 did not significantly affect intestinal inflammatory responses to commensal microbiota or animal susceptibility to Yersinia pseudotuberculosis infection. However, we found that Akp3?/? mice acquired LPS tolerance during postweaning development, suggesting that Akp3 plays an important role in immune education. Finally, we demonstrated that inhibiting LPS sensing with a mutation in CD14 abrogated the accelerated weight gain in Akp3?/? mice receiving a high-fat diet, suggesting that the weight gain is caused by excessive LPS in Akp3?/? mice.
机译:动物在复杂的微生物群落的存在下发育,宿主对这些微生物的早期反应可以影响成年生理的方式影响发育的关键方面,例如免疫系统的成熟。我们以前的研究表明,斑马鱼肠道碱性磷酸酶(ALPI)基因 alpi.1 是由革兰氏阴性细菌衍生的脂多糖(LPS)诱导的,该过程依赖于髓系分化初级反应基因88(MYD88) ,并起到解脂LPS的作用,并防止新定殖的肠道中对共生微生物过度的宿主炎症反应。在本研究中,我们检查了ALPI的调节和功能在哺乳动物中是否保守。我们发现,在小鼠ALPI基因中, Akp3 被微生物群特异性上调,但通过独立于LPS或MYD88的机制。我们表明破坏 Akp3 不会显着影响肠道对共生微生物的炎症反应或动物对耶尔森氏菌假结核感染的易感性。然而,我们发现 Akp3 ?/?小鼠在断奶后发育过程中获得了LPS耐受性,提示 Akp3 在免疫教育中起着重要的作用。最后,我们证明了以 CD14 突变抑制LPS感应可以消除接受高脂的 Akp3 ?/?小鼠加速的体重增加饮食,表明体重增加是由 Akp3 ?/?小鼠中过量的LPS引起的。

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