Mitochondrial chloride channels: electrophysiological characterization and pH induction of channel pore dilation

作者:Misak Anton; Grman Marian; Malekova Lubica; Novotova Marta; Markova Jana; Krizanova Olga; Ondrias Karol; Tomaskova Zuzana*
来源:European Biophysics Journal, 2013, 42(9): 709-720.
DOI:10.1007/s00249-013-0920-2

摘要

Physiological and pathological functions of mitochondria are highly dependent on the properties and regulation of mitochondrial ion channels. There is still no clear understanding of the molecular identity, regulation, and properties of anion mitochondrial channels. The inner membrane anion channel (IMAC) was assumed to be equivalent to mitochondrial centum picosiemens (mCS). However, the different properties of IMAC and mCS channels challenges this opinion. In our study, we characterized the single-channel anion selectivity and pH regulation of chloride channels from purified cardiac mitochondria. We observed that channel conductance decreased in the order: Cl- %26gt; Br- %26gt; I- %26gt; chlorate a parts per thousand formate %26gt; acetate, and that gluconate did not permeate under control conditions. The selectivity sequence was Br- a parts per thousand yen chlorate a parts per thousand yen I- a parts per thousand yen Cl- a parts per thousand yen formate a parts per thousand acetate. Measurement of the concentration dependence of chloride conductance revealed altered channel gating kinetics, which was demonstrated by prolonged mean open time value with increasing chloride concentration. The observed mitochondrial chloride channels were in many respects similar to those of mCS, but not those of IMAC. Surprisingly, we observed that acidic pH increased channel conductance and that an increase of pH from 7.4 to 8.5 reduced it. The gluconate current appeared and gradually increased when pH decreased from pH 7.0 to 5.6. Our results indicate that pH regulates the channel pore diameter in such a way that dilation increases with more acidic pH. We assume this newly observed pH-dependent anion channel property may be involved in pH regulation of anion distribution in different mitochondrial compartments.

  • 出版日期2013-9