Divalent Cation Modulation of Ion Permeation in TMEM16 Proteins

Author:

Nguyen Dung,Kwon Hwoi,Chen Tsung-Yu

Abstract

Intracellular divalent cations control the molecular function of transmembrane protein 16 (TMEM16) family members. Both anion channels (such as TMEM16A) and phospholipid scramblases (such as TMEM16F) in this family are activated by intracellular Ca2+ in the low µM range. In addition, intracellular Ca2+ or Co2+ at mM concentrations have been shown to further potentiate the saturated Ca2+-activated current of TMEM16A. In this study, we found that all alkaline earth divalent cations in mM concentrations can generate similar potentiation effects in TMEM16A when applied intracellularly, and that manipulations thought to deplete membrane phospholipids weaken the effect. In comparison, mM concentrations of divalent cations minimally potentiate the current of TMEM16F but significantly change its cation/anion selectivity. We suggest that divalent cations may increase local concentrations of permeant ions via a change in pore electrostatic potential, possibly acting through phospholipid head groups in or near the pore. Monovalent cations appear to exert a similar effect, although with a much lower affinity. Our findings resolve controversies regarding the ion selectivity of TMEM16 proteins. The physiological role of this mechanism, however, remains elusive because of the nearly constant high cation concentrations in cytosols.

Funder

National Institutes of Health

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Cited by 7 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Chloride ions in health and disease;Bioscience Reports;2024-04-29

2. Structural heterogeneity of the ion and lipid channel TMEM16F;Nature Communications;2024-01-02

3. Biophysical characterization of chloride intracellular channel 6 (CLIC6);Journal of Biological Chemistry;2023-11

4. Ca2+-Activated Chloride Channels and Phospholipid Scramblases;International Journal of Molecular Sciences;2022-02-15

5. Polymodal Control of TMEM16x Channels and Scramblases;International Journal of Molecular Sciences;2022-01-29

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