首页> 美国卫生研究院文献>Aging (Albany NY) >Gut microbiota transplantation from db/db mice induces diabetes-like phenotypes and alterations in Hippo signaling in pseudo germ-free mice
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Gut microbiota transplantation from db/db mice induces diabetes-like phenotypes and alterations in Hippo signaling in pseudo germ-free mice

机译:来自DB / DB小鼠的肠道微生物A移植诱导糖尿病样表型和河马信号传导的改变在伪无菌小鼠中

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摘要

Type 2 diabetes mellitus (T2DM) is an age-related metabolic disease that is of increasing concern. Gut microbiota might have a critical role in the pathogenesis of T2DM. Additionally, Hippo signaling has been associated strongly with the progression of T2DM and the aging process. We adopted db/db male mice as a T2DM model, and the gut microbiota of db/db and m/m mice were transplanted successfully into pseudo germ-free mice. Furthermore, Hippo signaling, including mammalian sterile 20-like protein kinases 1 (MST1), large tumor suppressors 1 (LATS1), Yes-associated protein (YAP), and phosphorylation of YAP (p-YAP) in peripheral tissues were significantly altered and highly correlated with blood glucose in db/db mice. Interestingly, the host after gut microbiota transplantation from db/db mice showed decreased MST1 and LATS1 levels, and p-YAP/YAP ratio in the heart, liver, and kidney compared to those from m/m mice. Negative correlations between fasting blood glucose and Hippo signaling levels in selected peripheral tissues also were identified. These findings suggest that alterations in Hippo signaling in selected peripheral tissues may contribute to the development of T2DM, and that therapeutic interventions improving Hippo signaling by gut microbiota transplantation might be beneficial for the treatment of T2DM and other age-related metabolic diseases.
机译:2型糖尿病(T2DM)是一种与年龄相关的代谢疾病,其关注越来越多。肠道微生物会在T2DM的发病机制中可能具有关键作用。此外,河马信令与T2DM的进展和老化过程有关。我们采用DB / DB雄性小鼠作为T2DM模型,将DB / DB和M / M小鼠的肠道微生物成功移植到伪无菌小鼠中。此外,河马信号传导,包括哺乳动物无菌20样蛋白激酶1(MST1),大肿瘤抑制剂1(LATS1),是外周组织中的YAP(P-YAP)的磷酸化和磷酸化,并且与DB / DB小鼠的血糖高度相关。有趣的是,从DB / DB小鼠的肠道微生物会移植后的宿主显示,与M / M小鼠的小鼠的心脏,肝脏和肾脏中的MST1和LAT1水平降低,P-YAP / YAP比率相比。还鉴定了选择外周组织中的空腹血糖和河马信号线之间的负相关。这些发现表明,选定外周组织中的河马信号传导的改变可能有助于T2DM的发展,并且通过肠道微生物肿瘤移植改善河马信号传导的治疗干预可能是有益于治疗T2DM和其他与年龄相关的代谢疾病。

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