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Calcium-sensing receptor (CaSR): Pharmacological properties and signaling pathways

机译:钙敏感受体(CaSR):药理特性和信号传导途径

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In this article we consider the mechanisms by which the calcium-sensing receptor (CaSR) induces its cellular responses via the control (activation or inhibition) of signaling pathways. We consider key features of CaSR-mediated signaling including its control of the heterotrimeric G-proteins G q/11, Gi/o and G12/13 and the downstream consequences recognizing that very few CaSR-mediated cell phenomena have been fully described. We also consider the manner in which the CaSR contributes to the formation of specific signaling scaffolds via peptide recognition sequences in its intracellular C-terminal along with the origins of its high level of cooperativity, particularly for Ca2+ o, and its remarkable resistance to desensitization. We also consider the nature of the mechanisms by which the CaSR controls oscillatory and sustained Ca2+ i mobilizing responses and inhibits or elevates cyclic adenosine monophosphate (cAMP) levels dependent on the cellular and signaling context. Finally, we consider the diversity of the receptor's ligands, ligand binding sites and broader compartment-dependent physiological roles leading to the identification of pronounced ligand-biased signaling for agonists including Sr2+ and modulators including l-amino acids and the clinically effective calcimimetic cinacalcet. We note the implications of these findings for the development of new designer drugs that might target the CaSR in pathophysiological contexts beyond those established for the treatment of disorders of calcium metabolism.
机译:在本文中,我们考虑了钙敏感受体(CaSR)通过信号传导途径的控制(激活或抑制)诱导其细胞反应的机制。我们考虑到CaSR介导的信号传导的关键特征,包括其对异源三聚体G蛋白G q / 11,Gi / o和G12 / 13的控制以及对下游后果的认识,认识到很少有CaSR介导的细胞现象已得到充分描述。我们还考虑了CaSR通过其细胞内C端中的肽段识别序列有助于形成特定信号传导支架的方式,以及其高水平协同作用(特别是对于Ca2 + o)的起源以及对脱敏的显着抗性。我们还考虑了机制的本质,通过该机制,CaSR可以控制振荡和持续的Ca2 + i动员响应,并根据细胞和信号传导环境抑制或升高环状单磷酸腺苷(cAMP)的水平。最后,我们考虑了受体配体的多样性,配体结合位点和更广泛的区室依赖性生理作用,从而导致了对包括Sr2 +在内的激动剂和包括L-氨基酸在内的调节剂和临床上有效的拟钙剂cinacalcet的明显的配体偏向信号的鉴定。我们注意到这些发现对开发新的设计药物可能产生的影响,这些药物可能在病理生理学背景下针对CaSR而不是针对钙代谢异常的治疗。

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