Sharpey-Schafer Lecture Gas channels

被引:74
作者
Boron, Walter F. [1 ]
机构
[1] Case Western Reserve Univ, Sch Med, Dept Physiol & Biophys, Cleveland, OH 44106 USA
关键词
RH C GLYCOPROTEIN; AMMONIUM TRANSPORTER PROTEINS; INTRACELLULAR PH TRANSIENTS; INTEGRAL MEMBRANE-PROTEIN; LIPID BILAYER-MEMBRANES; CARBON-DIOXIDE; CO2; PERMEABILITY; CRYSTAL-STRUCTURE; ESCHERICHIA-COLI; IONIC MECHANISM;
D O I
10.1113/expphysiol.2010.055244
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The traditional dogma has been that all gases diffuse through all membranes simply by dissolving in the lipid phase of the membrane. Although this mechanism may explain how most gases move through most membranes, it is now clear that some membranes have no demonstrable gas permeability, and that at least two families of membrane proteins, the aquaporins (AQPs) and the Rhesus (Rh) proteins, can each serve as pathways for the diffusion of both CO2 and NH3. The knockout of RhCG in the renal collecting duct leads to the predicted consequences in acid-base physiology, providing a clear-cut role for at least one gas channel in the normal physiology of mammals. In our laboratory, we have found that surface-pH (pH(S)) transients provide a sensitive approach for detecting CO2 and NH3 movement across the cell membranes of Xenopus oocytes. Using this approach, we have found that each tested AQP and Rh protein has its own characteristic CO2/NH3 permeability ratio, which provides the first demonstration of gas selectivity by a channel. Our preliminary AQP1 data suggest that all the NH3 and less than half of the CO2 move along with H2O through the four monomeric aquapores. The majority of CO2 takes an alternative route through AQP1, possibly the central pore at the four-fold axis of symmetry. Preliminary data with two Rh proteins, bacterial AmtB and human erythroid RhAG, suggest a similar story, with all the NH3 moving through the three monomeric NH3 pores and the CO2 taking a separate route, perhaps the central pore at the three-fold axis of symmetry. The movement of different gases via different pathways is likely to underlie the gas selectivity that these channels exhibit.
引用
收藏
页码:1107 / 1130
页数:24
相关论文
共 128 条
[1]   INVESTIGATION OF IONIC MECHANISM OF INTRACELLULAR PH REGULATION IN MOUSE SOLEUS MUSCLE-FIBERS [J].
AICKIN, CC ;
THOMAS, RC .
JOURNAL OF PHYSIOLOGY-LONDON, 1977, 273 (01) :295-316
[2]   Anchoring of aquaporin-4 in brain: Molecular mechanisms and implications for the physiology and pathophysiology of water transport [J].
Amiry-Moghaddam, M ;
Frydenlund, DS ;
Ottersen, OP .
NEUROSCIENCE, 2004, 129 (04) :999-1010
[3]   Crystal structure of the archaeal ammonium transporter Amt-1 from Archaeoglobus fulgidus [J].
Andrade, SLA ;
Dickmanns, A ;
Ficner, R ;
Einsle, O .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (42) :14994-14999
[4]   The challenge of understanding ammonium homeostasis and the role of the Rh glycoproteins [J].
Bakouh, N ;
Benjelloun, F ;
Cherif-Zahar, B ;
Planelles, G .
TRANSFUSION CLINIQUE ET BIOLOGIQUE, 2006, 13 (1-2) :139-146
[5]  
Bevensee M.O., 2008, Se/din and Giebisch's The Kidney, VFourth, P1429
[6]   A role for Rhesus factor Rhcg in renal ammonium excretion and male fertility [J].
Biver, Sophie ;
Belge, Hendrica ;
Bourgeois, Soline ;
Van Vooren, Pascale ;
Nowik, Marta ;
Scohy, Sophie ;
Houillier, Pascal ;
Szpirer, Josiane ;
Szpirer, Claude ;
Wagner, Carsten A. ;
Devuyst, Olivier ;
Marini, Anna Maria .
NATURE, 2008, 456 (7220) :339-343
[7]   THE PERMEABILITY OF MONOLAYERS TO CARBON DIOXIDE [J].
BLANK, M ;
ROUGHTON, FJW .
TRANSACTIONS OF THE FARADAY SOCIETY, 1960, 56 (12) :1832-1841
[8]   Regulation of intracellular pH [J].
Boron, WF .
ADVANCES IN PHYSIOLOGY EDUCATION, 2004, 28 (04) :160-179
[9]  
Boron WF, 1998, FASEB J, V12, pA374
[10]   ACTIVE PROTON TRANSPORT STIMULATED BY CO2-HCO3-, BLOCKED BY CYANIDE [J].
BORON, WF ;
DEWEER, P .
NATURE, 1976, 259 (5540) :240-241