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G protein-coupled receptors and their signaling pathways: classical therapeutical targets susceptible to novel therapeutic concepts.

机译:G蛋白偶联受体及其信号传导途径:易受新型治疗概念影响的经典治疗靶点。

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摘要

In recent years, new strategies in cancer therapy have been developed targeting key signaling molecules in the receptor tyrosine kinase signal transduction pathway. In contrast, most therapeutical concepts to manipulate G protein-coupled receptors (GPCR)-mediated disorders are still limited to the use of receptor-specific agonists or antagonists. Visible progress in the understanding of GPCR signaling complexity, especially the detection of several families of highly target- and cell-specific regulator proteins of GPCRs, G proteins, and effector components may open new horizons to develop novel therapeutical concepts targeting GPCR signaling elements. Thus, this review will focus on different molecular levels that may be of particular interest in terms of new drug development such as: (i) GPCR subtypes, allosteric binding sites, dimerization and constitutive activity, the use of RAMPs (receptor-activity-modifying proteins) and RASSLs (receptor activated solely by synthetic ligands); (ii) AGS (activators of G protein signaling) and RGS (regulators of G protein signaling) proteins which modify G protein activity; (iii) the high diversity of isozymes involved in the generation, signal transmission, and degradation of second messenger molecules.
机译:近年来,针对受体酪氨酸激酶信号转导途径中的关键信号分子,开发了癌症治疗的新策略。相比之下,大多数治疗G蛋白偶联受体(GPCR)介导的疾病的治疗方案仍仅限于受体特异性激动剂或拮抗剂的使用。在理解GPCR信号复杂性方面的可见进展,尤其是对GPCRs,G蛋白和效应子组件的高度靶定和细胞特异性调节蛋白的几个家族的检测,可能为开发针对GPCR信号元件的新型治疗概念开辟新的视野。因此,本综述将侧重于在新药开发方面可能特别感兴趣的不同分子水平,例如:(i)GPCR亚型,变构结合位点,二聚化和组成活性,RAMP的使用(受体活性修饰蛋白)和RASSL(仅由合成配体激活的受体); (ii)修饰G蛋白活性的AGS(G蛋白信号转导激活物)和RGS(G蛋白信号转导调节物)蛋白; (iii)与第二信使分子的产生,信号传输和降解有关的同工酶高度多样性。

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