CLIC-1 functions as a chloride channel when expressed and purified from bacteria.

CLIC-1 functions as a chloride channel when expressed and purified from bacteria.
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DOI:
10.1074/jbc.m004301200
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发表时间:
2000-09
期刊:
The Journal of biological chemistry
影响因子:
--
通讯作者:
B. Tulk;P. Schlesinger;Shefalee Kapadia;J. Edwards
B. Tulk;P. Schlesinger;Shefalee Kapadia;J. Edwards
中科院分区:
其他
文献类型:
--
作者:
B. Tulk;P. Schlesinger;Shefalee Kapadia;J. Edwards

文献摘要

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CLIC-1 is a member of a family of proteins related to the bovine intracellular chloride channel p64 which has been proposed to function as a chloride channel. We expressed CLIC-1 as a glutathione S-transferase fusion protein in bacteria. The fusion protein was purified by glutathione affinity, and CLIC-1 was released from its fusion partner by digestion with thrombin. After further purification, CLIC-1 was reconstituted into phospholipid vesicles by detergent dialysis. Chloride permeability of reconstituted vesicles was assessed using a valinomycin dependent chloride efflux assay, demonstrating increased vesicular chloride permeability with CLIC-1 compared with control. CLIC-1-dependent chloride permeability was inhibited by indanyloxyacetic acid-94 with an apparent IC(50) of 8.6 micrometer. The single channel properties of CLIC-1 were determined using the planar lipid bilayer technique. We found that CLIC-1 forms a voltage-dependent, Cl-selective channel with a rectifying current-voltage relationship and single channel conductances of 161 +/- 7.9 and 67.5 +/- 6.9 picosiemens in symmetric 300 and 150 mm KCl, respectively. The anion selectivity of this activity is Br approximately Cl > I. The open probability of CLIC-1 channels in planar bilayers was decreased by indanyloxyacetic acid-94 with an apparent IC(50) of 86 micrometer at 50 mV. These data convincingly demonstrate that CLIC-1 is capable of forming a novel, chloride-selective channel in the absence of other subunits or proteins.