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Structural mechanism of cooperative activation of the human calcium-sensing receptor by Ca2+ ions and L-tryptophan

Cell Res. 2021-04; 
Shenglong Ling , Pan Shi , Sanling Liu , Xianyu Meng , Yingxin Zhou , Wenjing Sun , Shenghai Chang , Xing Zhang , Longhua Zhang , Chaowei Shi , Demeng Sun , Lei Liu , Changlin Tian
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Proteins, Expression, Isolation and Analysis The supernatant fraction isolated by centrifugation at 170,000× g for 45 min was collected and incubated with Anti-Flag G1 Affinity Gel (GenScript) for 1 h at 4 °C. Get A Quote

摘要

The human calcium-sensing receptor (CaSR) is a class C G protein-coupled receptor (GPCR) responsible for maintaining Ca2+ homeostasis in the blood. The general consensus is that extracellular Ca2+ is the principal agonist of CaSR. Aliphatic and aromatic L-amino acids, such as L-Phe and L-Trp, increase the sensitivity of CaSR towards Ca2+ and are considered allosteric activators. Crystal structures of the extracellular domain (ECD) of CaSR dimer have demonstrated Ca2+ and L-Trp binding sites and conformational changes of the ECD upon Ca2+/L-Trp binding. However, it remains to be understood at the structural level how Ca2+/L-Trp binding to the ECD leads to conformational changes in transmembrane domains (TMDs) an... More

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