Molecular simulation assisted identification of Ca(2+) binding residues in TMEM16A.

Chun-Li Pang, Hong-Bo Yuan, Tian-Guang Cao, Ji-Guo Su, Ya-Fei Chen, Hui Liu, Hui Yu, Hai-Ling Zhang, Yong Zhan, Hai-Long An, Yue-Bin Han

Journal: Journal of computer-aided molecular design 2016;29(11):1035-43

PMID: 26481648

Abstract

Calcium-activated chloride channels (CaCCs) play vital roles in a variety of physiological processes. Transmembrane protein 16A (TMEM16A) has been confirmed as the molecular counterpart of CaCCs which greatly pushes the molecular insights of CaCCs forward. However, the detailed mechanism of Ca(2+) binding and activating the channel is still obscure. Here, we utilized a combination of computational and electrophysiological approaches to discern the molecular mechanism by which Ca(2+) regulates the gating of TMEM16A channels. The simulation results show that the first intracellular loop serves as a Ca(2+) binding site including D439, E444 and E447. The experimental results indicate that a novel residue, E447, plays key role in Ca(2+) binding. Compared with WT TMEM16A, E447Y produces a 30-fold increase in EC50 of Ca(2+) activation and leads to a 100-fold increase in Ca(2+) concentrations that is needed to fully activate the channel. The following steered molecular dynamic (SMD) simulation data suggests that the mutations at 447 reduce the Ca(2+) dissociation energy. Our results indicated that both the electrical property and the size of the side-chain at residue 447 have significant effects on Ca(2+) dependent gating of TMEM16A.

Address: Key laboratory of Molecular Biophysics, Tianjin, Hebei Province, China.; Institute of Biophysics, School of Sciences, Hebei University of Technology, Tianjin, China.; School of Sciences, Yanshan University, Qinhuangdao, China.; Key Laboratory of Neural and Vascular Biology, Ministry of Education, Shijiazhuang, China.; The Key Laboratory of Pharmacology and Toxicology for New Drug, Shijiazhuang, Hebei Province, China.; Department of Pharmacology, Hebei Medical University, Shijiazhuang, China.; Key laboratory of Molecular Biophysics, Tianjin, Hebei Province, China. [email protected].; Institute of Biophysics, School of Sciences, Hebei University of Technology, Tianjin, China. [email protected].; Key laboratory of Molecular Biophysics, Tianjin, Hebei Province, China. [email protected].; Institute of Biophysics, School of Sciences, Hebei University of Technology, Tianjin, China. [email protected].

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