ELECTROGENIC PROPERTIES OF THE EPITHELIAL AND NEURONAL HIGH-AFFINITY GLUTAMATE TRANSPORTER

被引:160
作者
KANAI, Y
NUSSBERGER, S
ROMERO, MF
BORON, WF
HEBERT, SC
HEDIGER, MA
机构
[1] BRIGHAM & WOMENS HOSP,DEPT MED,DIV RENAL,BOSTON,MA 02115
[2] HARVARD UNIV,SCH MED,DEPT MED,DIV RENAL,BOSTON,MA 02115
[3] HARVARD UNIV,SCH MED,DEPT BIOL CHEM & MOLEC PHARMACOL,BOSTON,MA 02115
[4] YALE UNIV,SCH MED,DEPT CELLULAR & MOLEC PHYSIOL,NEW HAVEN,CT 06510
关键词
D O I
10.1074/jbc.270.28.16561
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Active ion coupled glutamate transport is of critical importance for excitatory synaptic transmission, normal cellular function, and epithelial amino acid metabolism, We previously reported the cloning of the rabbit intestinal high affinity glutamate transporter EAAC1 (Kanai, Y., and Hediger, M. A. (1992) Nature 360, 467-471), which is expressed in numerous tissues including intestine, kidney, liver, heart, and brain. Here, we re port a detailed stoichiometric and kinetic analysis of EAAC1 expressed in Xenopus laevis oocytes. Uptake studies of Na-22(+) and [C-14]glutamate, in combination with measurements of intracellular pH with pH microelectrodes gave a glutamate to charge ratio of 1:1, a glutamate to Na+ ratio of 1:2, and a OH-/H+ to charge ratio of 1:1. Since transport is K+ dependent it can be concluded that EAAC1-mediated glutamate transport is coupled to the cotransport of 2 Na+ ions, the countertransport of one Kf ion and either the countertransport of one OH- ion or the cotransport of 1 H+ ion, We further demonstrate that under conditions where the electro chemical gradients for these ions are disrupted, EAAC1 runs in reverse, a transport mode which is of pathologic importance, Na-22(+) uptake studies revealed that there is a low level of Na+ uptake in the absence of extracellular glutamate which appears to be analogous to the Na+ leak observed for the intestinal. Na+/glucose cotransporter SGLT1. In voltage clamp studies, reducing extracellular Na+ from 100 to 10 mM strongly increased K-0.5(L-glutamate) and decreased I-max. The data indicate that Na+ binding at the extracellular transporter surface be comes rate-limiting. Studies addressing the cooperativity of the substrate-binding sites indicate that there are two distinct Na+-binding sites with different affinities and that Na+ binding is modulated by extracellular glutamate. A hypothetical ordered kinetic transport model for EAAC1 is discussed.
引用
收藏
页码:16561 / 16568
页数:8
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