Sokabe M, Sachs F, Jing Z Q
Department of Biophysical Sciences, State University of New York, Buffalo 14214.
Biophys J. 1991 Mar;59(3):722-8. doi: 10.1016/S0006-3495(91)82285-8.
Membrane patches from chick skeletal muscle were stretched by applying controlled suction or pressure to the pipette. From images of the patch, the patch dimensions (area and radius of curvature) were computed by nonlinear regression of the images to a geometric model. With no applied pressure, patch membranes are nearly planar and normal to the wall of the pipette. With increasing pressure gradients, the patch bulges, the radius of curvature decreases, and the area increases. The patch capacitance changes in exact proportion to the change in area at a rate of 0.7 microF/cm2. The increase in area is due to a flow of lipid (with perhaps small amounts of diffusible protein) along the walls of the pipette into the patch. The flow is reversible with a relaxation of the pressure gradient. The area elastic constant of the membrane is approximately 50 dyn/cm, insensitive to cytochalasin B and probably represents the elasticity of the underlying spectrin/dystrophin network. Simultaneous measurements of stretch activated (SA) ion channel activity in the patch showed that the sensitivity of channels from different patches, although different when calculated as a function of applied pressure, was the same when calculated as a function of tension. Because patch lipid is free to flow, and hence stress-free in the steady state, SA channels must be activated by tension in the cytoskeleton.
通过对移液管施加可控的吸力或压力来拉伸鸡骨骼肌的膜片。根据膜片的图像,通过将图像与几何模型进行非线性回归来计算膜片尺寸(面积和曲率半径)。在没有施加压力时,膜片几乎是平的,且与移液管壁垂直。随着压力梯度增加,膜片鼓起,曲率半径减小,面积增加。膜片电容以0.7微法/平方厘米的速率与面积变化精确成比例地变化。面积增加是由于脂质(可能还有少量可扩散蛋白)沿着移液管壁流入膜片。随着压力梯度的松弛,这种流动是可逆的。膜的面积弹性常数约为50达因/厘米,对细胞松弛素B不敏感,可能代表了底层血影蛋白/肌营养不良蛋白网络的弹性。对膜片中拉伸激活(SA)离子通道活性的同步测量表明,来自不同膜片的通道的敏感性,虽然以施加压力为函数计算时不同,但以张力为函数计算时是相同的。由于膜片脂质可以自由流动,因此在稳态下无应力,SA通道必须由细胞骨架中的张力激活。