首页> 美国卫生研究院文献>The Journal of General Physiology >Mechanism of basolateral membrane H+/OH-/HCO-3 transport in the rat proximal convoluted tubule. A sodium-coupled electrogenic process
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Mechanism of basolateral membrane H+/OH-/HCO-3 transport in the rat proximal convoluted tubule. A sodium-coupled electrogenic process

机译:大鼠近曲小管中基底外侧膜H + / OH- / HCO-3转运的机制。钠耦合的成电过程

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摘要

In order to examine the mechanism of basolateral membrane H+/OH-/HCO-3 transport, a method was developed for the measurement of cell pH in the vivo doubly microperfused rat proximal convoluted tubule. A pH- sensitive fluorescein derivative, (2',7')-bis(carboxyethyl)-(5,6)- carboxyfluorescein, was loaded into cells and relative changes in fluorescence at two excitation wavelengths were followed. Calibration was accomplished using nigericin with high extracellular potassium concentrations. When luminal and peritubular fluids were pH 7.32, cell pH was 7.14 +/- 0.01. Decreasing peritubular pH from 7.32 to 6.63 caused cell pH to decrease from 7.16 +/- 0.02 to 6.90 +/- 0.03. This effect occurred at an initial rate of 2.4 +/- 0.3 pH units/min, and was inhibited by 0.5 mM SITS. Lowering the peritubular sodium concentration from 147 to 25 meq/liter caused cell pH to decrease from 7.20 +/- 0.03 to 6.99 +/- 0.01. The effect of peritubular sodium concentration on cell pH was inhibited by 0.5 mM SITS, but was unaffected by 1 mM amiloride. In addition, when peritubular pH was decreased in the total absence of luminal and peritubular sodium, the rate of cell acidification was 0.2 +/- 0.1 pH units/min, a greater than 90% decrease from that in the presence of sodium. Cell depolarization achieved by increasing the peritubular potassium concentration caused cell pH to increase, an effect that was blocked by peritubular barium or luminal and peritubular sodium removal. Lowering the peritubular chloride concentration from 128 to 0 meq/liter did not affect cell pH. These results suggest the existence of an electrogenic, sodium-coupled H+/OH- /HCO-3 transport mechanism on the basolateral membrane of the rat proximal convoluted tubule.
机译:为了检查基底外侧膜H + / OH- / HCO-3转运的机制,开发了一种用于测量体内双微灌流大鼠近曲小管中细胞pH的方法。将pH敏感的荧光素衍生物(2',7')-双(羧乙基)-(5,6)-羧基荧光素装载到细胞中,并跟踪在两个激发波长下荧光的相对变化。校准使用具有高细胞外钾浓度的黑霉素进行。当腔内和肾小管周液的pH为7.32时,细胞pH为7.14 +/- 0.01。肾小管周围pH从7.32降低到6.63,导致细胞pH从7.16 +/- 0.02降低到6.90 +/- 0.03。此效应以2.4 +/- 0.3 pH单位/分钟的初始速率发生,并被0.5 mM SITS抑制。肾小管周围钠浓度从147降低到25毫克当量/升,导致细胞pH从7.20 +/- 0.03降低到6.99 +/- 0.01。 0.5 mM SITS抑制肾小管周围钠浓度对细胞pH的影响,但不受1 mM阿米洛利影响。另外,当在完全不存在管腔和管周钠的情况下降低了管周的pH值时,细胞酸化速率为0.2 +/- 0.1 pH单位/ min,比存在钠时降低了90%以上。通过增加肾小管周围钾浓度实现的细胞去极化导致细胞pH值增加,这一效果被肾小管周围钡或管腔和肾小管周围钠的去除所阻止。将肾小管周围的氯化物浓度从128降低到0 meq / l不会影响细胞的pH。这些结果表明在大鼠近曲小管的基底外侧膜上存在电致钠耦合的H + / OH- / HCO-3转运机制。

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