GLP-1受体的抑制蛋白独立内化是由GRK、网格蛋白和小泡依赖机制促进的。

Ee Von Moo, Thor Christian Møller, Frederikke Astrid Sørensen, Asuka Inoue, Hans Bräuner-Osborne
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摘要

胰高血糖素样肽-1受体(glucagon-like peptide-1 receptor, GLP-1R)在调节胰岛素分泌和减轻体重中发挥重要作用,是治疗2型糖尿病和肥胖症的重要靶点。对GLP-1R信号传导的广泛研究为受体功能与生理结果之间的联系提供了见解,例如Gs信号传导与胰岛素分泌之间的相关性,但调节信号传导的确切机制尚不清楚。在这里,我们探索GLP-1R的内化途径,这对于控制胰岛素释放和维持胰腺β细胞功能至关重要。利用可靠且敏感的时间分辨荧光共振能量转移(TR-FRET)内化实验,结合hek293衍生的敲除细胞系,我们能够直接比较不同内吞机制在GLP-1R内化中的作用。我们的研究结果表明,该受体的内化独立于抑制素,并依赖于Gs和Gi/o活化以及G蛋白偶联受体激酶磷酸化。在机制上,我们观察到受体在HEK293细胞中经历了不同的网格蛋白和小泡介导的内化。本研究还探讨了阻滞在GLP-1R功能和调控中的作用。这些对GLP-1R内化通路中涉及的关键内吞成分的见解可以增强GLP-1R治疗2型糖尿病和其他GLP-1R相关疾病的合理设计。
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Arrestin-independent internalization of the GLP-1 receptor is facilitated by a GRK, clathrin, and caveolae-dependent mechanism.

The glucagon-like peptide-1 receptor (GLP-1R) plays an important role in regulating insulin secretion and reducing body weight, making it a prominent target in the treatment of type 2 diabetes and obesity. Extensive research on GLP-1R signaling has provided insights into the connection between receptor function and physiological outcomes, such as the correlation between Gs signaling and insulin secretion, yet the exact mechanisms regulating signaling remain unclear. Here, we explore the internalization pathway of GLP-1R, which is crucial for controlling insulin release and maintaining pancreatic beta-cell function. Utilizing a reliable and sensitive time-resolved fluorescence resonance energy transfer (TR-FRET) internalization assay, combined with HEK293-derived knockout cell lines, we were able to directly compare the involvement of different endocytic machinery in GLP-1R internalization. Our findings indicate that the receptor internalizes independently of arrestin and is dependent on Gs and Gi/o activation and G protein-coupled receptor kinase phosphorylation. Mechanistically, we observed that the receptor undergoes distinct clathrin- and caveolae-mediated internalization in HEK293 cells. This study also investigated the role of arrestins in GLP-1R function and regulation. These insights into key endocytic components that are involved in the GLP-1R internalization pathway could enhance the rational design of GLP-1R therapeutics for type 2 diabetes and other GLP-1R-related diseases.

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