Department of Pharmacology, Columbia University, New York, NY 10032.
Department of Biochemistry and Molecular Biophysics, Columbia University, New York, NY 10032.
Proc Natl Acad Sci U S A. 2021 Dec 21;118(51). doi: 10.1073/pnas.2115849118.
The human extracellular calcium-sensing (CaS) receptor controls plasma Ca levels and contributes to nutrient-dependent maintenance and metabolism of diverse organs. Allosteric modulation of the CaS receptor corrects disorders of calcium homeostasis. Here, we report the cryogenic-electron microscopy reconstructions of a near-full-length CaS receptor in the absence and presence of allosteric modulators. Activation of the homodimeric CaS receptor requires a break in the transmembrane 6 (TM6) helix of each subunit, which facilitates the formation of a TM6-mediated homodimer interface and expansion of homodimer interactions. This transformation in TM6 occurs without a positive allosteric modulator. Two modulators with opposite functional roles bind to overlapping sites within the transmembrane domain through common interactions, acting to stabilize distinct rotamer conformations of key residues on the TM6 helix. The positive modulator reinforces TM6 distortion and maximizes subunit contact to enhance receptor activity, while the negative modulator strengthens an intact TM6 to dampen receptor function. In both active and inactive states, the receptor displays symmetrical transmembrane conformations that are consistent with its homodimeric assembly.
人类细胞外钙敏感受体(CaS)控制着血浆 Ca 水平,并有助于依赖营养物质的多种器官的维持和代谢。CaS 受体的变构调节可纠正钙稳态紊乱。在此,我们报告了无和有别构调节剂存在情况下,近全长 CaS 受体的低温电子显微镜重建。同源二聚体 CaS 受体的激活需要每个亚基的跨膜 6(TM6)螺旋的断裂,这有利于 TM6 介导的同源二聚体界面的形成和同源二聚体相互作用的扩展。这种 TM6 的转变无需正变构调节剂。两种具有相反功能作用的调节剂通过共同作用结合到跨膜域内重叠的位点,作用于稳定 TM6 螺旋上关键残基的不同旋转构象。正变构调节剂增强 TM6 变形并最大化亚基接触以增强受体活性,而负变构调节剂则增强完整的 TM6 以抑制受体功能。在活性和非活性状态下,受体均显示出对称的跨膜构象,这与其同源二聚体组装一致。