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首页> 外文期刊>Molecular Metabolism >G@as regulates Glucagon-Like Peptide 1 Receptor-mediated cyclic AMP generation at Rab5 endosomal compartment
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G@as regulates Glucagon-Like Peptide 1 Receptor-mediated cyclic AMP generation at Rab5 endosomal compartment

机译:G @ as调节Rab5内体区室的胰高血糖素样肽1受体介导的环状AMP生成

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摘要

Objective: Upon activation, G protein coupled receptors (GPCRs) associate with heterotrimeric G proteins at the plasma membrane to initiate second messenger signaling. Subsequently, the activated receptor experiences desensitization, internalization, and recycling back to the plasma membrane, or it undergoes lysosomal degradation. Recent reports highlight specific cases of persistent cyclic AMP generation by internalized GPCRs, although the functional significance and mechanistic details remain to be defined. Cyclic AMP generation from internalized Glucagon-Like Peptide-1 Receptor (GLP-1R) has previously been reported from our laboratory. This study aimed at deciphering the molecular mechanism by which internalized GLP-R supports sustained cyclic AMP generation upon receptor activation in pancreatic beta cells. Methods: We studied the time course of cyclic AMP generation following GLP-1R activation with particular emphasis on defining the location where cyclic AMP is generated. Detection involved a novel GLP-1 conjugate coupled with immunofluorescence using specific endosomal markers. Finally, we employed co-immunoprecipitation as well as immunofluorescence to assess the protein-protein interactions that regulate GLP-1R mediated cyclic AMP generation at endosomes. Results: Our data reveal that prolonged association of G protein @a subunit G@as with activated GLP-1R contributed to sustained cyclic AMP generation at Rab 5 endosomal compartment. Conclusions: The findings provide the mechanism of endosomal cyclic AMP generation following GLP-1R activation. We identified the specific compartment that serves as an organizing center to generate endosomal cyclic AMP by internalized activated receptor complex.
机译:目的:激活后,G蛋白偶联受体(GPCR)与质膜上的异三聚体G蛋白结合,以启动第二信使信号传导。随后,活化的受体经历脱敏,内在化和再循环回到质膜,或者经历溶酶体降解。最近的报告重点介绍了通过内在GPCR产生持久性AMP的具体案例,尽管其功能重要性和机制细节尚待确定。我们实验室先前曾报道过从内在的胰高血糖素样肽1受体(GLP-1R)生成环AMP。这项研究旨在破译内在的GLP-R支持胰腺β细胞受体激活后持续产生环AMP的分子机制。方法:我们研究了GLP-1R激活后循环AMP产生的时间过程,特别着重于定义产生循环AMP的位置。检测涉及使用特异性内体标记物的新型GLP-1偶联物与免疫荧光偶联。最后,我们采用了共免疫沉淀法和免疫荧光法来评估调节内体中GLP-1R介导的环AMP生成的蛋白质-蛋白质相互作用。结果:我们的数据显示,G蛋白@a亚基G @ as与活化的GLP-1R的延长缔合促进了Rab 5内体区室的持续循环AMP产生。结论:这些发现提供了GLP-1R激活后内体环状AMP产生的机制。我们确定了特定的区室,该区室是通过内部激活的受体复合物生成内体环状AMP的组织中心。

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