Ben-Chaim Yair, Chanda Baron, Dascal Nathan, Bezanilla Francisco, Parnas Itzchak, Parnas Hanna
Department of Neurobiology, The Hebrew University, Jerusalem, 91904, Israel.
Nature. 2006 Nov 2;444(7115):106-9. doi: 10.1038/nature05259. Epub 2006 Oct 25.
Activation by agonist binding of G-protein-coupled receptors (GPCRs) controls most signal transduction processes. Although these receptors span the cell membrane, they are not considered to be voltage sensitive. Recently it was shown that both the activity of GPCRs and their affinity towards agonists are regulated by membrane potential. However, it remains unclear whether GPCRs intrinsically respond to changes in membrane potential. Here we show that two prototypical GPCRs, the m2 and m1 muscarinic receptors (m2R and m1R), display charge-movement-associated currents analogous to 'gating currents' of voltage-gated channels. The gating charge-voltage relationship of m2R correlates well with the voltage dependence of the affinity of the receptor for acetylcholine. The loop that couples m2R and m1R to their G protein has a crucial function in coupling voltage sensing to agonist-binding affinity. Our data strongly indicate that GPCRs serve as sensors for both transmembrane potential and external chemical signals.
G蛋白偶联受体(GPCRs)与激动剂结合所引发的激活作用控制着大多数信号转导过程。尽管这些受体跨越细胞膜,但它们并不被认为是电压敏感的。最近有研究表明,GPCRs的活性及其对激动剂的亲和力均受膜电位调控。然而,GPCRs是否本质上对膜电位变化作出反应仍不清楚。在此我们表明,两种典型的GPCRs,即M2和M1毒蕈碱受体(m2R和m1R),显示出与电压门控通道的“门控电流”类似的电荷移动相关电流。m2R的门控电荷 - 电压关系与该受体对乙酰胆碱亲和力的电压依赖性密切相关。将m2R和m1R与其G蛋白偶联的环在将电压传感与激动剂结合亲和力偶联方面具有关键作用。我们的数据有力地表明,GPCRs可作为跨膜电位和外部化学信号的传感器。