MECHANISMS OF BICARBONATE TRANSPORT BY CULTURED RABBIT INNER MEDULLARY COLLECTING DUCT CELLS

被引:10
作者
WEILL, AE
TISHER, CC
CONDE, MF
WEINER, ID
机构
[1] UNIV FLORIDA,COLL MED,DIV NEPHROL HYPERTENS & TRANSPLANTAT,GAINESVILLE,FL 32610
[2] VET AFFAIRS MED CTR,GAINESVILLE,FL 32608
来源
AMERICAN JOURNAL OF PHYSIOLOGY | 1994年 / 266卷 / 03期
关键词
INTRACELLULAR PH; CHLORIDE BICARBONATE EXCHANGE; SODIUM-(BICARBONATE)(N-GREATER-THAN-1) COTRANSPORT;
D O I
10.1152/ajprenal.1994.266.3.F466
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The inner medullary collecting duct (LMCD) is the final portion of the mammalian renal tubule that is able to significantly regulate systemic acid-base balance. Although the H+ transporters of this segment are relatively well studied, little is known regarding the mechanisms of HCO3- transport. The mechanisms of HCO3- transport in primary cultures of rabbit IMCD were studied using the pH-sensitive dye, 2',7'-bis(2-carboxyethyl)-5(6)-carboxyflurescein, in CO2/HCO3--containing solutions at 37 degrees C. Removal of Cl- from the extracellular solution caused reversible intracellular alkalinization, demonstrating the presence of Cl-/HCO3- exchange. Alkalinization with Cl- removal was independent of changes in membrane potential, did not require the presence of extracellular Na+, and was inhibited by the disulfonic stilbene, 4,4'-diisothiocyanostilbene-2,2'-disulfo acid(DIDS,10(-4) M). Half-mammal intracellular pH (pH(i)) recovery with readdition of Cl- to the extracellular solution occurred at a Cl- concentration of 37.4 +/- 5.7 mM. When rabbit IMCD were cultured on permeable support membranes, Cl-/HCO3- exchange activity was found only on the basolateral membrane. However, there was no evidence of band 3 protein immunoreactivity. In contrast, no evidence for Na+-(HCO3-)(n>1) cotransport activity was found. Depolarization of IMCD cells by acute increases in extracellular K+ did not alter pH(i), nor was Na+-dependent, 5-(N-ethyl-N-isopropyl)amiloride-insensitive pH(i) recovery from an acid load inhibited by DIDS (10(-4) M). Finally, recovery from intracellular alkalosis induced by incubation in 0 mM Cl-, 50 mM HCO3- extracellular solution required Cl- and was independent of Na+. These studies indicate that the major mechanism of HCO3- transport in primary cultures of the rabbit LMCD is via a band 3 protein-negative, Na+-independent, basolateral, Cl-/HCO3- exchanger.
引用
收藏
页码:F466 / F476
页数:11
相关论文
共 39 条
[1]   SUBTYPES OF INTERCALATED CELLS IN RAT-KIDNEY COLLECTING DUCT DEFINED BY ANTIBODIES AGAINST ERYTHROID BAND-3 AND RENAL VACUOLAR H+-ATPASE [J].
ALPER, SL ;
NATALE, J ;
GLUCK, S ;
LODISH, HF ;
BROWN, D .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1989, 86 (14) :5429-5433
[2]   MECHANISM OF BASOLATERAL MEMBRANE H+/OH-/HCO3- TRANSPORT IN THE RAT PROXIMAL CONVOLUTED TUBULE - A SODIUM-COUPLED ELECTROGENIC PROCESS [J].
ALPERN, RJ .
JOURNAL OF GENERAL PHYSIOLOGY, 1985, 86 (05) :613-636
[3]   SUPPRESSION OF ACIDIFICATION ALONG INNER MEDULLARY COLLECTING DUCT [J].
BENGELE, HH ;
MCNAMARA, ER ;
SCHWARTZ, JH ;
ALEXANDER, EA .
AMERICAN JOURNAL OF PHYSIOLOGY, 1988, 255 (02) :F307-F312
[4]   EFFECT OF BUFFER INFUSION DURING ACUTE RESPIRATORY-ACIDOSIS [J].
BENGELE, HH ;
SCHWARTZ, JH ;
MCNAMARA, ER ;
ALEXANDER, EA .
AMERICAN JOURNAL OF PHYSIOLOGY, 1986, 250 (01) :F115-F119
[5]   CHRONIC METABOLIC-ACIDOSIS AUGMENTS ACIDIFICATION ALONG THE INNER MEDULLARY COLLECTING DUCT [J].
BENGELE, HH ;
SCHWARTZ, JH ;
MCNAMARA, ER ;
ALEXANDER, EA .
AMERICAN JOURNAL OF PHYSIOLOGY, 1986, 250 (04) :F690-F694
[6]   INFLUENCE OF CYCLIC-AMP ON INTRACELLULAR PH REGULATION AND CHLORIDE FLUXES IN BARNACLE MUSCLE-FIBERS [J].
BORON, WF ;
RUSSELL, JM ;
BRODWICK, MS ;
KEIFER, DW ;
ROOS, A .
NATURE, 1978, 276 (5687) :511-513
[7]   THE ELECTROGENIC NA/HCO3 COTRANSPORTER [J].
BORON, WF ;
BOULPAEP, EL .
KIDNEY INTERNATIONAL, 1989, 36 (03) :392-402
[8]   REGULATION OF RABBIT MEDULLARY COLLECTING DUCT CELL PH BY BASOLATERAL NA+/H+ AND CL-/BASE EXCHANGE [J].
BREYER, MD ;
JACOBSON, HR .
JOURNAL OF CLINICAL INVESTIGATION, 1989, 84 (03) :996-1004
[9]   DEVELOPMENT OF H+ SECRETION BY CULTURED RENAL INNER MEDULLARY COLLECTING DUCT CELLS [J].
BRION, LP ;
SCHWARTZ, JH ;
LACHMAN, HM ;
ZAVILOWITZ, BJ ;
SCHWARTZ, GJ .
AMERICAN JOURNAL OF PHYSIOLOGY, 1989, 257 (03) :F486-F501
[10]   SEGMENTAL ANALYSIS OF THE RENAL TUBULE IN BUFFER PRODUCTION AND NET ACID FORMATION [J].
BUERKERT, J ;
MARTIN, D ;
TRIGG, D .
AMERICAN JOURNAL OF PHYSIOLOGY, 1983, 244 (04) :F442-F454