Evidence for a second binding/transport site for chloride in erythrocyte anion transporter AE1 modified at glutamate 681

被引:18
作者
Jennings, ML [1 ]
机构
[1] Univ Arkansas Med Sci, Dept Physiol & Biophys, Little Rock, AR 72205 USA
关键词
D O I
10.1529/biophysj.104.056812
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Transport kinetics have been examined in erythrocyte anion transporter AE1 that has been chemically modified to convert glutamate 681 to an alcohol ( E681OH AE1). Outward conductive Cl- flux in E681OH AE1 is inhibited by removal of extracellular Cl-; this effect is the opposite of that in native AE1 and is consistent with coupled electrogenic 2: 1 Cl-/Cl- exchange. A second Cl- binding/ transport site is also suggested by the characteristics of (SO42-)-S-35 flux in E681OH AE1: bilateral and cis Cl-, which are normally inhibitory, accelerate (SO42-)-S-35 flux. These effects would be expected if Cl- binds to a second transport site on SO42- -loaded E681OH AE1, thereby allowing Cl/SO42- cotransport. Alternatively, the data can be explained without proposing Cl-/SO42- cotransport if the rate- limiting event for (SO42-)-S-35 /SO42- exchange is external SO42- release, and the binding of external Cl- accelerates SO42- release. With either interpretation, these data indicate that E681OH AE1 has a binding/ transport site for Cl- that is distinct from the main transport site. The effects of graded modi. cation of E681 or inhibition by H2DIDS are consistent with the idea that the new Cl- binding site is on the same E681OH- modified subunit of the AE1 dimer as the normal transport site.
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页码:2681 / 2691
页数:11
相关论文
共 51 条
[1]   Secondary active transport mediated by a prokaryotic homologue of ClC Cl- channels [J].
Accardi, A ;
Miller, C .
NATURE, 2004, 427 (6977) :803-807
[2]  
Alper SL, 2002, J NEPHROL, V15, pS41
[3]   Sequential phosphorylation of protein band 3 by Syk and Lyn tyrosine kinases in intact human erythrocytes: identification of primary and secondary phosphorylation sites [J].
Brunati, AM ;
Bordin, L ;
Clari, G ;
James, P ;
Quadroni, M ;
Baritono, E ;
Pinna, LA ;
Donella-Deana, A .
BLOOD, 2000, 96 (04) :1550-1557
[4]   ORGANIC-PHOSPHATES MODULATE ANION SELF-EXCHANGE ACROSS THE HUMAN-ERYTHROCYTE MEMBRANE [J].
BURSAUX, E ;
HILLY, M ;
BLUZE, A ;
POYART, C .
BIOCHIMICA ET BIOPHYSICA ACTA, 1984, 777 (02) :253-260
[5]   MEMBRANE PROTEINS RELATED TO ANION PERMEABILITY OF HUMAN RED BLOOD-CELLS .1. LOCALIZATION OF DISULFONIC STILBENE BINDING-SITES IN PROTEINS INVOLVED IN PERMEATION [J].
CABANTCHIK, ZI ;
ROTHSTEIN, A .
JOURNAL OF MEMBRANE BIOLOGY, 1974, 15 (03) :207-226
[6]  
CASEY JR, 1991, J BIOL CHEM, V266, P15726
[7]   Electrogenic sulfate/chloride exchange in Xenopus oocytes mediated by murine AE1 E699Q [J].
Chernova, MN ;
Jiang, L ;
Crest, M ;
Hand, M ;
Vandorpe, DH ;
Strange, K ;
Alper, SL .
JOURNAL OF GENERAL PHYSIOLOGY, 1997, 109 (03) :345-360
[8]   EFFECTS OF HALIDES AND BICARBONATE ON CHLORIDE TRANSPORT IN HUMAN RED BLOOD-CELLS [J].
DALMARK, M .
JOURNAL OF GENERAL PHYSIOLOGY, 1976, 67 (02) :223-234
[9]   X-ray structure of a CIC chloride channel at 3.0 Å reveals the molecular basis of anion selectivity [J].
Dutzler, R ;
Campbell, EB ;
Cadene, M ;
Chait, BT ;
MacKinnon, R .
NATURE, 2002, 415 (6869) :287-294
[10]   Gating the selectivity filter in ClC chloride channels [J].
Dutzler, R ;
Campbell, EB ;
MacKinnon, R .
SCIENCE, 2003, 300 (5616) :108-112