MULTIION PORE BEHAVIOR IN THE CFTR CHLORIDE CHANNEL

被引:207
作者
TABCHARANI, JA
ROMMENS, JM
HOU, YX
CHANG, XB
TSUI, LC
RIORDAN, JR
HANRAHAN, JW
机构
[1] MCGILL UNIV,DEPT PHYSIOL,3655 DRUMMOND ST,MONTREAL H3G 1Y6,QUEBEC,CANADA
[2] UNIV TORONTO,DEPT MOLEC & MED GENET,TORONTO M5S 1A1,ONTARIO,CANADA
[3] UNIV TORONTO,DEPT BIOCHEM & CLIN BIOCHEM,TORONTO M5S 1A1,ONTARIO,CANADA
[4] HOSP SICK CHILDREN,RES INST,TORONTO M5G 1X8,ONTARIO,CANADA
关键词
D O I
10.1038/366079a0
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
CYSTIC fibrosis transmembrane conductance regulator (CFTR) is a non-rectifying, low-conductance channel1,2 regulated by ATP3 and phosphorylation, which mediates apical chloride conductance in secretory epithelia5,6 and malfunctions in cystic fibrosis (CF)7,8. Mutations at Lys 335 and Arg 347 in the sixth predicted transmembrane helix of CFTR alter its halide selectivity in whole-cell studies9 and its single channel conductance10, but the physical basis of these alterations is unknown and permeation in CFTR is poorly understood. Here we present evidence that wild-type CFTR can contain more than one anion simultaneously. The conductance of CFTR passes through a minimum when channels are bathed in mixtures of two permeant anions. This anomalous mole fraction effect can be abolished by replacing Arg 347 with an aspartate and can be toggled on or off by varying the pH after the same residue is replaced with a histidine. Thus the CFTR channel should provide a convenient model in which to study multi-ion pore behaviour and conduction. The loss of multiple occupancy may explain how naturally occurring CF mutations at this site cause disease.
引用
收藏
页码:79 / 82
页数:4
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