Two-sided action of protons on an inward rectifier K+ channel (IRK1)

被引:0
|
作者
R. Z. Sabirov
Yasunobu Okada
Shigetoshi Oiki
机构
[1] Department of Cellular and Molecular Physiology,
[2] National Institute for Physiological Sciences,undefined
[3] Myodaiji-cho,undefined
[4] Okazaki 444,undefined
[5] Japan,undefined
[6] Department of Cellular and Molecular Physiology,undefined
[7] National Institute for Physiological Sciences,undefined
[8] Myodaiji-cho,undefined
[9] Okazaki 444,undefined
[10] Japan,undefined
[11] Department of Cellular and Molecular Physiology,undefined
[12] National Institute for Physiological Sciences,undefined
[13] Myodaiji-cho,undefined
[14] Okazaki 444,undefined
[15] Japan,undefined
来源
Pflügers Archiv | 1997年 / 433卷
关键词
Key words IRK1 channel; Proton block; Channel conductance;
D O I
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中图分类号
学科分类号
摘要
 A cloned inwardly rectifying potassium channel, IRK1, expressed in Xenopus oocytes was found to be sensitive to an extracellular acidic pH level of below 6, achieved by buffering with a membrane-impermeable buffer, phthalate. The voltage dependency of the suppressive effect of pH on the macroscopic current suggested that the location of the proton-sensitive site was at ≈ 5% of the distance from the outer entrance to the pore. The single-channel conductance was reduced by protonation of the channel on the extracellular side. The external proton-binding site appears to consist of a single class of negatively charged groups with a pK of around 4.6. An intracellular acidic pH, buffered with membrane-permeable acetate, was found to inhibit, in a voltage-independent manner, the macroscopic IRK1 current with an approximate apparent pK of 5.6 and an approximate apparent Hill coefficient of 2.3. The single-channel activity was abolished by intracellular acidification down to pH 5.0.
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页码:428 / 434
页数:6
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