Ismailov I I, Shlyonsky V G, Benos D J
Department of Physiology and Biophysics, University of Alabama, Birmingham, AL 35294, USA.
Proc Natl Acad Sci U S A. 1997 Jul 8;94(14):7651-4. doi: 10.1073/pnas.94.14.7651.
Streaming potentials across cloned epithelial Na+ channels (ENaC) incorporated into planar lipid bilayers were measured. We found that the establishment of an osmotic pressure gradient (Deltapi) across a channel-containing membrane mimicked the activation effects of a hydrostatic pressure differential (DeltaP) on alphabetagamma-rENaC, although with a quantitative difference in the magnitude of the driving forces. Moreover, the imposition of a Deltapi negates channel activation by DeltaP when the Deltapi was directed against DeltaP. A streaming potential of 2.0 +/- 0.7 mV was measured across alphabetagamma-rat ENaC (rENaC)-containing bilayers at 100 mM symmetrical [Na+] in the presence of a 2 Osmol/kg sucrose gradient. Assuming single file movement of ions and water within the conduction pathway, we conclude that between two and three water molecules are translocated together with a single Na+ ion. A minimal effective pore diameter of 3 A that could accommodate two water molecules even in single file is in contrast with the 2-A diameter predicted from the selectivity properties of alphabetagamma-rENaC. The fact that activation of alphabetagamma-rENaC by DeltaP can be reproduced by the imposition of Deltapi suggests that water movement through the channel is also an important determinant of channel activity.
测量了整合到平面脂质双分子层中的克隆上皮钠通道(ENaC)上的流动电位。我们发现,在含通道的膜上建立渗透压梯度(Δπ)模拟了静水压力差(ΔP)对αβγ-rENaC的激活作用,尽管驱动力大小存在定量差异。此外,当Δπ与ΔP方向相反时,施加Δπ会抵消ΔP对通道的激活作用。在100 mM对称[Na⁺]且存在2 Osmol/kg蔗糖梯度的情况下,在含αβγ-大鼠ENaC(rENaC)的双分子层上测得的流动电位为2.0±0.7 mV。假设离子和水在传导途径中以单列形式移动,我们得出结论,单个Na⁺离子移动时会有两到三个水分子一起转运。即使以单列形式也能容纳两个水分子的最小有效孔径为3 Å,这与从αβγ-rENaC的选择性特性预测的2 Å直径相反。施加Δπ可重现ΔP对αβγ-rENaC的激活作用,这一事实表明水通过通道的移动也是通道活性的重要决定因素。