Brennan Sarah C, Mun Hee-Chang, Leach Katie, Kuchel Philip W, Christopoulos Arthur, Conigrave Arthur D
School of Molecular Bioscience (S.C.B., H.-C.M., P.W.K., A.D.C.), University of Sydney, New South Wales 2006, Australia; and Monash Institute of Pharmaceutical Sciences and Department of Pharmacology (K.L., A.C.), Monash University, Parkville, Victoria 3052, Australia.
Endocrinology. 2015 Apr;156(4):1330-42. doi: 10.1210/en.2014-1771. Epub 2015 Jan 21.
Calcium-sensing receptors (CaSRs) are class C G protein-coupled receptors that respond to physiological activators, including extracellular Ca2+ (Cao2+) and L-amino acids as well as the pharmaceutical calcimimetic, cinacalcet. Unlike Cao2+, which is an orthosteric agonist, L-amino acids and cinacalcet are positive allosteric modulators. CaSR expression levels vary considerably between tissues, but the physiological significance of these differences in expression for the effects of its activators is unknown. To investigate the impact of receptor expression on CaSR-mediated signaling we used a tetracycline-inducible expression system and focused on intracellular Ca2+ (Cai2+) responses in single cells and considered both population and single-cell behavior. Increased receptor expression positively modulated CaSR-mediated Cai2+ mobilization in response to elevated Cao2+, the amino acid L-phenylalanine, or the calcimimetic cinacalcet. It lowered threshold concentrations for the initiation of Cai2+ oscillations and for their transformation to sustained Cai2+ elevations, and it increased the proportions of responding cells. It also positively modulated the frequency of Cai2+ oscillations with the order of effectiveness: cinacalcet equal to or greater than Cao2+ greater than L-phenylalanine. The results indicate that receptor expression modulates key characteristics of the Cai2+ response at the single-cell level as well as the amplitude of whole-tissue CaSR-mediated responses by recruiting quiescent cells into the active pool of responding cells. By lowering the threshold concentrations for Cao2+- and L-amino acid-induced responses below the physiological levels of these nutrients in plasma, mechanisms that up-regulate receptor expression can control tissue function in the absence of dynamic changes in ligand concentration.
钙敏感受体(CaSRs)是C类G蛋白偶联受体,可对包括细胞外Ca2+(Cao2+)、L-氨基酸以及药物西那卡塞在内的生理激活剂作出反应。与作为正位激动剂的Cao2+不同,L-氨基酸和西那卡塞是正变构调节剂。CaSR在不同组织中的表达水平差异很大,但其表达差异对激活剂效应的生理意义尚不清楚。为了研究受体表达对CaSR介导信号传导的影响,我们使用了四环素诱导表达系统,重点研究单细胞内的细胞内Ca2+(Cai2+)反应,并考虑群体和单细胞行为。受体表达增加可正向调节CaSR介导的Cai2+动员,以响应升高的Cao2+、氨基酸L-苯丙氨酸或拟钙剂西那卡塞。它降低了Cai2+振荡起始及其转变为持续Cai2+升高的阈值浓度,并增加了反应细胞的比例。它还以有效性顺序正向调节Cai2+振荡的频率:西那卡塞等于或大于Cao2+大于L-苯丙氨酸。结果表明,受体表达通过将静止细胞招募到反应细胞的活跃池中,在单细胞水平上调节Cai2+反应的关键特征以及全组织CaSR介导反应的幅度。通过将Cao2+和L-氨基酸诱导反应的阈值浓度降低到血浆中这些营养素的生理水平以下,上调受体表达的机制可以在配体浓度无动态变化的情况下控制组织功能。