Yeh T H, Herman P, Tsai M C, Tran Ba Huy P, Van den Abbeele T
Laboratoire d'Otologie Experimentale, Faculté de Médecine Lariboisiére-Saint Louis, Paris, France.
Am J Physiol. 1998 Mar;274(3):C566-76. doi: 10.1152/ajpcell.1998.274.3.C566.
The Reissner's membrane (RM) separates in the mammalian cochlea the K(+)-rich endolymph from the Na(+)-rich perilymph. The patch-clamp technique was used to investigate the transport mechanisms in epithelial cells of RM freshly dissected from the guinea pig cochlea. This study shows a stretch-activated nonselective cationic channel (SA channel) with a linear current-voltage relationship (23 pS) highly selective for cations over anions [K+ approximately Na+ (1) > Ba2+ (0.65) > Ca2+ (0.32) >> Cl- (0.14)] and activated by the intrapipette gradient pressure. The open probability-pressure relationship is best fitted by a Boltzmann distribution (half-maximal pressure = 37.8 mmHg, slope constant = 8.2 mmHg). SA channels exhibit a strong voltage dependency and are insensitive to internal Ca2+, ATP, and fenamates but are blocked by 1 microM GdCl3 in the pipette. They are reversibly activated by in situ superfusion of the cell with hyposmotic solutions. Kinetic studies show that depolarization and mechanical or osmotic stretch modify the closed and open time constants probably by a different mechanism. These channels could participate in pressure-induced modifications of ionic permeability of the RM.
在哺乳动物的耳蜗中,赖斯纳膜(RM)将富含钾离子(K⁺)的内淋巴与富含钠离子(Na⁺)的外淋巴分隔开来。采用膜片钳技术研究了从豚鼠耳蜗新鲜分离的RM上皮细胞中的转运机制。本研究显示了一种牵张激活的非选择性阳离子通道(SA通道),其电流 - 电压关系呈线性(23 pS),对阳离子的选择性远高于阴离子[K⁺≈Na⁺(1)> Ba²⁺(0.65)> Ca²⁺(0.32)>> Cl⁻(0.14)],并由吸管内的梯度压力激活。开放概率 - 压力关系最适合用玻尔兹曼分布拟合(半最大压力 = 37.8 mmHg,斜率常数 = 8.2 mmHg)。SA通道表现出强烈的电压依赖性,对细胞内的Ca²⁺、ATP和非甾体抗炎药不敏感,但在吸管中被1 μM GdCl₃阻断。它们可通过用低渗溶液原位灌注细胞而被可逆激活。动力学研究表明,去极化以及机械或渗透压牵张可能通过不同机制改变关闭和开放时间常数。这些通道可能参与压力诱导的RM离子通透性变化。