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Pathophysiology of GPCR Homo- and Heterodimerization: Special Emphasis on Somatostatin Receptors

机译:GPCR同源和异源二聚化的病理生理学:生长抑素受体的特别强调

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G-protein coupled receptors (GPCRs) are cell surface proteins responsible for translating 80% of extracellular reception to intracellular signals. The extracellular information in the form of neurotransmitters, peptides, ions, odorants etc is converted to intracellular signals via a wide variety of effector molecules activating distinct downstream signaling pathways. All GPCRs share common structural features including an extracellular N-terminal, seven-transmembrane domains (TMs) linked by extracellular/intracellular loops and the C-terminal tail. Recent studies have shown that most GPCRs function as dimers (homo- and/or heterodimers) or even higher order of oligomers. Protein-protein interaction among GPCRs and other receptor proteins play a critical role in the modulation of receptor pharmacology and functions. Although ~50% of the current drugs available in the market target GPCRs, still many GPCRs remain unexplored as potential therapeutic targets, opening immense possibility to discover the role of GPCRs in pathophysiological conditions. This review explores the existing information and future possibilities of GPCRs as tools in clinical pharmacology and is specifically focused for the role of somatostatin receptors (SSTRs) in pathophysiology of diseases and as the potential candidate for drug discovery.
机译:G蛋白偶联受体(GPCR)是负责将80%以上的细胞外接收信号翻译为细胞内信号的细胞表面蛋白。神经递质,肽,离子,增香剂等形式的细胞外信息通过多种激活不同下游信号通路的效应分子转化为细胞内信号。所有GPCR共有共同的结构特征,包括通过细胞外/细胞内环和C末端尾部连接的细胞外N末端,七跨膜结构域(TM)。最近的研究表明,大多数GPCR都起着二聚体(均二聚体和/或异二聚体)或什至更高阶的低聚体的作用。 GPCR和其他受体蛋白之间的蛋白相互作用在调节受体药理学和功能中起着至关重要的作用。尽管目前市场上约有50%的药物靶向GPCR,但仍有许多GPCR尚未作为潜在的治疗靶标进行开发,这为发现GPCR在病理生理状况中的作用提供了巨大的可能性。这篇综述探讨了GPCR作为临床药理学工具的现有信息和未来可能性,并特别着重于生长抑素受体(SSTR)在疾病的病理生理中的作用以及作为药物发现的潜在候选者。

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