Ji H L, Fuller C M, Benos D J
Department of Physiology and Biophysics, University of Alabama, Birmingham, Alabama 35294-0005, USA.
Am J Physiol. 1998 Nov;275(5):C1182-90. doi: 10.1152/ajpcell.1998.275.5.C1182.
The hypothesis that amiloride-sensitive Na+ channels (ENaC) are involved in cell volume regulation was tested. Anisosmotic ND-20 media (ranging from 70 to 450 mosM) were used to superfuse Xenopus oocytes expressing alpha beta gamma-rat ENaC (alpha beta gamma-rENaC). Whole cell currents were reversibly dependent on external osmolarity. Under conditions of swelling (70 mosM) or shrinkage (450 mosM), current amplitude decreased and increased, respectively. In contrast, there was no change in current amplitude of H2O-injected oocytes to the above osmotic insults. Currents recorded from alpha beta gamma-rENaC-injected oocytes were not sensitive to external Cl- concentration or to the K+ channel inhibitor BaCl2. They were sensitive to amiloride. The concentration of amiloride necessary to inhibit one-half of the maximal rENaC current expressed in oocytes (Ki; apparent dissociation constant) decreased in swollen cells and increased in shrunken oocytes. The osmotic pressure-induced Na+ currents showed properties similar to those of stretch-activated channels, including inhibition by Gd3+ and La3+, and decreased selectivity for Na+. alpha beta gamma-rENaC-expressing oocytes maintained a nearly constant cell volume in hypertonic ND-20. The present study is the first demonstration that alpha beta gamma-rENaC heterologously expressed in Xenopus oocytes may contribute to oocyte volume regulation following shrinkage.
对氨氯地平敏感的钠离子通道(ENaC)参与细胞容积调节这一假说进行了验证。使用不同渗透压的ND - 20培养基(渗透压范围为70至450 mosM)对表达αβγ - 大鼠ENaC(αβγ - rENaC)的非洲爪蟾卵母细胞进行灌流。全细胞电流可逆地依赖于细胞外渗透压。在细胞肿胀(70 mosM)或收缩(450 mosM)的情况下,电流幅度分别降低和增加。相比之下,注射水的卵母细胞在上述渗透压刺激下电流幅度没有变化。从注射αβγ - rENaC的卵母细胞记录到的电流对细胞外氯离子浓度或钾离子通道抑制剂氯化钡不敏感。它们对氨氯地平敏感。抑制卵母细胞中最大rENaC电流一半所需的氨氯地平浓度(Ki;表观解离常数)在肿胀细胞中降低,在收缩的卵母细胞中增加。渗透压诱导的钠离子电流表现出与牵张激活通道相似的特性,包括被钆离子(Gd3 +)和镧离子(La3 +)抑制,以及对钠离子的选择性降低。表达αβγ - rENaC的卵母细胞在高渗ND - 20中维持近乎恒定的细胞容积。本研究首次证明,在非洲爪蟾卵母细胞中异源表达的αβγ - rENaC可能在卵母细胞收缩后对其容积调节起作用。