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胞质pH对正常和囊性纤维化汗腺上皮钠通道的影响。

Effect of cytosolic pH on epithelial Na+ channel in normal and cystic fibrosis sweat ducts.

作者信息

Reddy M M, Wang X F, Quinton P M

机构信息

Department of Pediatrics-0831, School of Medicine, University of California-San Diego, La Jolla, CA 92093-0831, USA.

出版信息

J Membr Biol. 2008 Sep-Oct;225(1-3):1-11. doi: 10.1007/s00232-008-9126-4. Epub 2008 Oct 21.

Abstract

The activities of cystic fibrosis transmembrane conductance regulator (CFTR) Cl(-) channel and the amiloride-sensitive epithelial Na(+) channel (ENaC) are acutely coordinated in the sweat duct. However, the mechanisms responsible for cross-talk between these ion channels are unknown. Previous studies indicated that luminal pH of sweat ducts varies over 3 pH units and that the cytoplasmic pH affects both CFTR and ENaC. Therefore, using basolaterally alpha-toxin-permeabilized apical membrane preparations of sweat ducts as an experimental system, we tested the hypothesis that the cytosolic pH may mediate the cross-talk between CFTR and ENaC. We showed that while luminal pH had no effect, cytosolic pH acutely affected ENaC activity. That is, acidic pH inhibited, while basic pH activated, ENaC. pH regulation of ENaC appears to be independent of CFTR or endogenous kinase activities because basic pH independently stimulated ENaC (1) in normal ducts even when CFTR was deactivated, (2) in CF ducts that lack CFTR in the plasma membranes and (3) after blocking endogenous kinase activity with staurosporine. Considering the evidence of Na(+)/H(+) exchange (NHE) activity as shown by the expression of mRNA and function of NHE in the basolateral membrane of the sweat duct, we postulate that changes in cytosolic Na(+) (Na(+)) may alter cytosolic pH (pH( i )) as salt loads into the cell during electrolyte absorption. These changes may play a role in coordinating the activities of ENaC and CFTR during transepithelial salt transport.

摘要

囊性纤维化跨膜传导调节因子(CFTR)氯离子通道与氨氯地平敏感的上皮钠通道(ENaC)的活性在汗腺导管中存在急性协同作用。然而,这些离子通道之间相互作用的机制尚不清楚。先前的研究表明,汗腺导管腔内pH值在3个pH单位范围内变化,且细胞质pH值会影响CFTR和ENaC。因此,我们以经基底侧α-毒素通透处理的汗腺导管顶端膜制剂作为实验系统,检验了细胞质pH值可能介导CFTR与ENaC之间相互作用的假说。我们发现,虽然管腔pH值无影响,但细胞质pH值会急性影响ENaC活性。也就是说,酸性pH值会抑制ENaC,而碱性pH值会激活ENaC。ENaC的pH调节似乎独立于CFTR或内源性激酶活性,因为碱性pH值能独立刺激ENaC:(1)在正常导管中,即使CFTR失活时也是如此;(2)在质膜中缺乏CFTR的囊性纤维化(CF)导管中;(3)在用星形孢菌素阻断内源性激酶活性后。鉴于汗腺导管基底侧膜中Na⁺/H⁺交换(NHE)活性的mRNA表达及功能所显示的证据,我们推测,在电解质吸收过程中,当盐进入细胞时,细胞质中钠离子浓度([Na⁺]i)的变化可能会改变细胞质pH值(pHi)。这些变化可能在跨上皮盐转运过程中协调ENaC和CFTR的活性方面发挥作用。

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