Steady-state function of the ubiquitous mammalian Na/H exchanger (NHE1) in relation to dimer coupling models with 2Na/2H stoichiometry

被引:47
作者
Fuster, Daniel
Moe, Orson W.
Hilgemann, Donald W. [1 ]
机构
[1] Univ Texas SW Med Ctr Dallas, Dept Physiol, Dallas, TX 75390 USA
关键词
D O I
10.1085/jgp.200810016
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The Journal of General Physiology We describe the steady-state function of the ubiquitous mammalian Na/H exchanger (NHE) 1 isoform in voltage-clamped Chinese hamster ovary cells, as well as other cells, using oscillating pH-sensitive microelectrodes to quantify proton fluxes via extracellular pH gradients. Giant excised patches could not be used as gigaseal formation disrupts NHE activity within the patch. We first analyzed forward transport at an extracellular pH of 8.2 with no cytoplasmic Na (i. e., nearly zero-trans). The extracellular Na concentration dependence is sigmoidal at a cytoplasmic pH of 6.8 with a Hill coefficient of 1.8. In contrast, at a cytoplasmic pH of 6.0, the Hill coefficient is <1, and Na dependence often appears biphasic. Results are similar for mouse skin fibroblasts and for an opossum kidney cell line that expresses the NHE3 isoform, whereas NHE1(-/-) skin fibroblasts generate no proton fluxes in equivalent experiments. As proton flux is decreased by increasing cytoplasmic pH, the half-maximal concentration (K-1/2) of extracellular Na decreases less than expected for simple consecutive ion exchange models. The K-1/2 for cytoplasmic protons decreases with increasing extracellular Na, opposite to predictions of consecutive exchange models. For reverse transport, which is robust at a cytoplasmic pH of 7.6, the K-1/2 for extracellular protons decreases only a factor of 0.4 when maximal activity is decreased fivefold by reducing cytoplasmic Na. With 140 mM of extracellular Na and no cytoplasmic Na, the K-1/2 for cytoplasmic protons is 50 nM ( pH 7.3; Hill coefficient, 1.5), and activity decreases only 25% with extracellular acidification from 8.5 to 7.2. Most data can be reconstructed with two very different coupled dimer models. In one model, monomers operate independently at low cytoplasmic pH but couple to translocate two ions in "parallel" at alkaline pH. In the second "serial" model, each monomer transports two ions, and translocation by one monomer allosterically promotes translocation by the paired monomer in opposite direction. We conclude that a large fraction of mammalian Na/H activity may occur with a 2Na/2H stoichiometry.
引用
收藏
页码:465 / 480
页数:16
相关论文
共 49 条
[1]   INFLUENCE OF EGTA ON THE APPARENT CA-2+ AFFINITY OF MG-2+-DEPENDENT, CA-2+-STIMULATED ATPASE IN THE HUMAN-ERYTHROCYTE MEMBRANE [J].
ALJOBORE, A ;
ROUFOGALIS, BD .
BIOCHIMICA ET BIOPHYSICA ACTA, 1981, 645 (01) :1-9
[2]   Mechanism of Na+/H+ antiporting [J].
Arkin, Isaiah T. ;
Xu, Huafeng ;
Jensen, Morten O. ;
Arbely, Eyal ;
Bennett, Estelle R. ;
Bowers, Kevin J. ;
Chow, Edmond ;
Dror, Ron O. ;
Eastwood, Michael P. ;
Flitman-Tene, Ravenna ;
Gregersen, Brent A. ;
Klepeis, John L. ;
Kolossvary, Istvan ;
Shan, Yibing ;
Shaw, David E. .
SCIENCE, 2007, 317 (5839) :799-803
[3]   MODIFIER ROLE OF INTERNAL H+ IN ACTIVATING THE NA+-H+ EXCHANGER IN RENAL MICROVILLUS MEMBRANE-VESICLES [J].
ARONSON, PS ;
NEE, J ;
SUHM, MA .
NATURE, 1982, 299 (5879) :161-163
[4]   Evolutionary origins of eukaryotic sodium/proton exchangers [J].
Brett, CL ;
Donowitz, M ;
Rao, R .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2005, 288 (02) :C223-C239
[5]   INHIBITIONS OF SUGAR-TRANSPORT PRODUCED BY LIGANDS BINDING AT OPPOSITE SIDES OF THE MEMBRANE - EVIDENCE FOR SIMULTANEOUS OCCUPATION OF THE CARRIER BY MALTOSE AND CYTOCHALASIN-B [J].
CARRUTHERS, A ;
HELGERSON, AL .
BIOCHEMISTRY, 1991, 30 (16) :3907-3915
[6]   REGULATION OF THE NA+/H+ EXCHANGER UNDER CONDITIONS OF ABOLISHED PROTON GRADIENT - ISOSMOTIC AND HYPEROSMOTIC STIMULATION [J].
DASCALU, A ;
NEVO, Z ;
KORENSTEIN, R .
FEBS LETTERS, 1991, 282 (02) :305-309
[7]   THE MAMMALIAN NA+/H+ ANTIPORTERS NHE-1, NHE-2, AND NHE-3 ARE ELECTRONEUTRAL AND VOLTAGE INDEPENDENT, BUT CAN COUPLE TO AN H+ CONDUCTANCE [J].
DEMAUREX, N ;
ORLOWSKI, J ;
BRISSEAU, G ;
WOODSIDE, M ;
GRINSTEIN, S .
JOURNAL OF GENERAL PHYSIOLOGY, 1995, 106 (01) :85-111
[8]   Direct binding of the Na-H exchanger NHE1 to ERM proteins regulates the cortical cytoskeleton and cell shape independently of H+ translocation [J].
Denker, SP ;
Huang, DC ;
Orlowski, J ;
Furthmayr, H ;
Barber, DL .
MOLECULAR CELL, 2000, 6 (06) :1425-1436
[9]  
DIXON SJ, 1987, J BIOL CHEM, V262, P3626
[10]  
DOKTOR HS, 1991, J HUM HYPERTENS, V5, P161