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Role of FGF19 induced FGFR4 activation in the regulation of glucose homeostasis

机译:FGF19诱导的FGFR4激活在葡萄糖调节中的作用 体内平衡

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摘要

FGF19, FGF21, and FGF23 form a unique subfamily of fibroblast growth factors. Because they contain intra-molecular disulfide bonds and show reduced affinity toward heparan sulfate located in the extracellular space, it is thought that, in contrast to other FGFs, they function as endocrine hormones. FGF23 and its co-receptor αKlotho are involved in the control of aging, but it is not known if the same holds true for FGF19, which can also signal through αKlotho. However, considerable evidence supports a role for FGF19 in controlling various aspects of metabolism. We have recently fully characterized FGF19/FGFR/co-factor interactions and signaling, and in the current manuscript discuss the contribution of the FGF19/FGFR4 axis to bile acid and glucose regulation.
机译:FGF19,FGF21和FGF23形成成纤维细胞生长因子的独特亚家族。因为它们包含分子内二硫键,并且对位于细胞外空间的硫酸乙酰肝素显示出降低的亲和力,所以认为与其他FGF相比,它们起内分泌激素的作用。 FGF23及其共受体αKlotho参与了衰老的控制,但尚不知道FGF19是否同样适用,FGF19也可以通过αKlotho发出信号。然而,大量证据支持FGF19在控制代谢的各个方面的作用。我们最近已经充分表征了FGF19 / FGFR /辅因子的相互作用和信号传导,并且在当前的手稿中讨论了FGF19 / FGFR4轴对胆汁酸和葡萄糖调节的贡献。

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