Leviel F, Borensztein P, Houillier P, Paillard M, Bichara M
Laboratoire de Physiologie et Endocrinologie Cellulaire Rénale, Université Pierre et Marie Curie, Paris, France.
J Clin Invest. 1992 Sep;90(3):869-78. doi: 10.1172/JCI115962.
The renal medullary thick ascending limb (MTAL) of the rat absorbs bicarbonate through luminal H+ secretion and basolateral HCO3- transport into the peritubular space. To characterize HCO3- transport, intracellular pH (pHi) was monitored by use of the pH-sensitive fluorescent probe (2',7')-bis-(carboxyethyl)-(5,6)-carboxyfluorescein in fresh suspensions of rat MTAL tubules. When cells were preincubated in HCO3-/CO2-containing solutions and then abruptly diluted into HCO3-/CO2-free media, the pHi response was an initial alkalinization due to CO2 efflux, followed by an acidification (pHi recovery). The pHi recovery required intracellular HCO3-, was inhibited by 10(-4) M diisothiocyanostilbene-2-2'-disulphonic acid (DIDS), and was not dependent on Cl- or Na+. As assessed by use of the cell membrane potential-sensitive fluorescent probe 3,3'-dipropylthiadicarbocyanine, cell depolarization by abrupt Cl- removal from or addition of 2 mM barium into the external medium did not affect HCO3(-)-dependent pHi recovery, and the latter was not associated per se with any change in potential difference, which indicated that HCO3- transport was electroneutral. The HCO3(-)-dependent pHi recovery was inhibited by raising extracellular potassium concentration and by intracellular potassium depletion. Finally, as measured by use of a K(+)-selective extracellular electrode, a component of K+ efflux out of the cells was HCO3- dependent and DIDS sensitive. The results provide evidence for an electroneutral K+/HCO3- cotransport in rat MTAL cells.
大鼠肾髓质厚壁升支(MTAL)通过管腔分泌H⁺和基底外侧将HCO₃⁻转运至肾小管周围间隙来吸收碳酸氢盐。为了表征HCO₃⁻的转运,在大鼠MTAL肾小管的新鲜悬浮液中,使用pH敏感荧光探针(2',7')-双-(羧乙基)-(5,6)-羧基荧光素监测细胞内pH(pHi)。当细胞在含HCO₃⁻/CO₂的溶液中预孵育,然后突然稀释到不含HCO₃⁻/CO₂的培养基中时,pHi反应先是由于CO₂外流导致的初始碱化,随后是酸化(pHi恢复)。pHi恢复需要细胞内HCO₃⁻,受到10⁻⁴M二异硫氰基芪-2,2'-二磺酸(DIDS)的抑制,且不依赖于Cl⁻或Na⁺。通过使用细胞膜电位敏感荧光探针3,3'-二丙基硫代二羰花青评估,从外部培养基中突然去除Cl⁻或添加2 mM钡使细胞去极化,并不影响依赖HCO₃⁻的pHi恢复,且后者本身与电位差的任何变化无关,这表明HCO₃⁻转运是电中性的。依赖HCO₃⁻的pHi恢复受到细胞外钾浓度升高和细胞内钾耗竭的抑制。最后,通过使用K⁺选择性细胞外电极测量,细胞内K⁺外流的一个成分是依赖HCO₃⁻且对DIDS敏感的。这些结果为大鼠MTAL细胞中存在电中性K⁺/HCO₃⁻共转运提供了证据。