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Determination of bilayer membrane bending stiffness by tether formation from giant thin-walled vesicles.

机译:通过巨大的薄壁囊泡的系链形成测定双层膜的弯曲刚度。

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摘要

The curvature elastic modulus (bending stiffness) of stearoyloleoyl phosphatidylcholine (SOPC) bilayer membrane is determined from membrane tether formation experiments. R. E. Waugh and R. M. Hochmuth 1987. Biophys. J. 52:391-400) have shown that the radius of a bilayer cylinder (tether) is inversely related to the force supported along its axis. The coefficient that relates the axial force on the tether to the tether radius is the membrane bending stiffness. Thus, the bending stiffness can be calculated directly from measurements of the tether radius as a function of force. Giant (10-50-microns diam) thin-walled vesicles were aspirated into a micropipette and a tether was pulled out of the surface by gravitational forces on small glass beads that had adhered to the vesicle surface. Because the vesicle keeps constant surface area and volume, formation of the tether requires displacement of material from the projection of the vesicle in the pipette. Tethers can be made to grow longer or shorter or to maintain equilibrium by adjusting the aspiration pressure in the micropipette at constant tether force. The ratio of the change in the length of the tether to the change in the projection length is proportional to the ratio of the pipette radius to the tether radius. Thus, knowing the density and diameter of the glass beads and measuring the displacement of the projection as a function of tether length, independent determinations of the force on the tether and the tether radius were obtained. The bending stiffness for an SOPC bilayer obtained from these data is approximately 2.0 x 10(-12) dyn cm, for tether radii in the range of 20-100 nm. An equilibrium relationship between pressure and tether force is derived which closely matches experimental observation.
机译:硬脂酰油酰磷脂酰胆碱(SOPC)双层膜的曲率弹性模量(弯曲刚度)由膜系链形成实验确定。 R. E. Waugh和R. M. Hochmuth1987。生物物理。 J. 52:391-400)已经表明,双层圆柱体(系链)的半径与沿其轴线支撑的力成反比。将绳索上的轴向力与绳索半径相关联的系数是膜的弯曲刚度。因此,抗弯刚度可以直接根据作为力的函数的系绳半径的测量结果来计算。将巨大的(10-50微米直径)薄壁囊泡抽吸到微量移液器中,并通过重力将粘附在其表面的小玻璃珠从表面拉出系绳。由于囊泡保持恒定的表面积和体积,系绳的形成需要从移液管中囊泡的投影中移出材料。通过在恒定的系链力下调节微量移液器中的抽吸压力,可以使系链长一些或短些或保持平衡。系绳的长度变化与突出长度的变化之比与移液管半径与系绳半径之比成比例。因此,知道了玻璃珠的密度和直径并测量了凸起的位移作为系绳长度的函数,就可以独立确定系绳上的力和系绳半径。从这些数据获得的SOPC双层的弯曲刚度约为2.0 x 10(-12)dyn cm,系绳半径在20-100 nm范围内。得出压力和系链力之间的平衡关系,该关系与实验观察结果非常匹配。

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