首页> 美国卫生研究院文献>Drug Metabolism and Disposition >Identification of Flavin-Containing Monooxygenase 5 (FMO5) as a Regulator of Glucose Homeostasis and a Potential Sensor of Gut Bacteria
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Identification of Flavin-Containing Monooxygenase 5 (FMO5) as a Regulator of Glucose Homeostasis and a Potential Sensor of Gut Bacteria

机译:鉴定含有黄素的单加氧酶5(FMO5)作为葡萄糖稳态的调节剂和肠道细菌的潜在传感器。

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摘要

We have previously identified flavin-containing monooxygenase 5 (FMO5) as a regulator of metabolic aging. The aim of the present study was to investigate the role of FMO5 in glucose homeostasis and the impact of diet and gut flora on the phenotype of mice in which the Fmo5 gene has been disrupted (Fmo5/ mice). In comparison with wild-type (WT) counterparts, Fmo5/ mice are resistant to age-related changes in glucose homeostasis and maintain the higher glucose tolerance and insulin sensitivity characteristic of young animals. When fed a high-fat diet, they are protected against weight gain and reduction of insulin sensitivity. The phenotype of Fmo5/ mice is independent of diet and the gut microbiome and is determined solely by the host genotype. Fmo5/ mice have metabolic characteristics similar to those of germ-free mice, indicating that FMO5 plays a role in sensing or responding to gut bacteria. In WT mice, FMO5 is present in the mucosal epithelium of the gastrointestinal tract where it is induced in response to a high-fat diet. In comparison with WT mice, Fmo5/ mice have fewer colonic goblet cells, and they differ in the production of the colonic hormone resistin-like molecule β. Fmo5/ mice have lower concentrations of tumor necrosis factor α in plasma and of complement component 3 in epididymal white adipose tissue, indicative of improved inflammatory tone. Our results implicate FMO5 as a regulator of body weight and of glucose disposal and insulin sensitivity and, thus, identify FMO5 as a potential novel therapeutic target for obesity and insulin resistance.
机译:我们以前已经确定了含有黄素的单加氧酶5(FMO5)作为代谢衰老的调节剂。本研究的目的是研究FMO5在葡萄糖体内稳态中的作用以及饮食和肠道菌群对Fmo5基因被破坏的小鼠表型的影响(Fmo5 - / -鼠标)。与野生型(WT)对应物相比,Fmo5 - / -小鼠对与年龄相关的葡萄糖动态平衡具有抵抗力,并维持较高的葡萄糖耐性和年轻动物的胰岛素敏感性特征。喂高脂饮食时,它们可以防止体重增加和胰岛素敏感性降低。 Fmo5 - / -小鼠的表型与饮食和肠道微生物组无关,并且仅由宿主基因型决定。 Fmo5 - / - 小鼠的代谢特征与无菌小鼠相似,表明FMO5发挥了在感知或响应肠道细菌中发挥作用。在野生型小鼠中,FMO5存在于胃肠道的粘膜上皮中,在其中被高脂饮食诱导。与WT小鼠相比, Fmo5 - / 小鼠的结肠杯状细胞较少,它们的结肠激素抵抗素样分子β的产生也不同。 Fmo5 - / - < / em>小鼠血浆中肿瘤坏死因子α的浓度较低,附睾白色脂肪组织中补体成分3的浓度较低,这表明炎症调性得到改善。我们的结果暗示FMO5作为体重,葡萄糖处置和胰岛素敏感性的调节剂,因此,将FMO5确定为肥胖和胰岛素抵抗的潜在新治疗靶标。

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