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Actin protofilament orientation in deformation of the erythrocyte membrane skeleton.

机译:肌动蛋白原丝的方向在红细胞膜骨架的变形中。

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摘要

The red cell's spectrin-actin network is known to sustain local states of shear, dilation, and condensation, and yet the short actin filaments are found to maintain membrane-tangent and near-random azimuthal orientations. When calibrated with polarization results for single actin filaments, imaging of micropipette-deformed red cell ghosts has allowed an assessment of actin orientations and possible reorientations in the network. At the hemispherical cap of the aspirated projection, where the network can be dilated severalfold, filaments have the same membrane-tangent orientation as on a relatively unstrained portion of membrane. Likewise, over the length of the network projection pulled into the micropipette, where the network is strongly sheared in axial extension and circumferential contraction, actin maintains its tangent orientation and is only very weakly aligned with network extension. Similar results are found for the integral membrane protein Band 3. Allowing for thermal fluctuations, we deduce a bound for the effective coupling constant, alpha, between network shear and azimuthal orientation of the protofilament. The finding that alpha must be about an order of magnitude or more below its tight-coupling value illustrates how nanostructural kinematics can decouple from more macroscopic responses. Monte Carlo simulations of spectrin-actin networks at approximately 10-nm resolution further support this conclusion and substantiate an image of protofilaments as elements of a high-temperature spin glass.
机译:众所周知,红细胞的血影蛋白-肌动蛋白网络可维持剪切,扩张和凝结的局部状态,但发现短的肌动蛋白丝可以维持膜切线和近乎随机的方位角方向。当用单个肌动蛋白丝的极化结果进行校准时,微移液管变形的红细胞重影的成像可以评估肌动蛋白的取向以及网络中可能的重新取向。在吸气突出物的半球形帽处,网状结构可以扩张几倍,细丝与在膜的相对未拉伸部分上的膜切线方向相同。同样,在拉入微量移液器的网络投影的整个长度上,网络在轴向延伸和周向收缩中受到强烈剪切,肌动蛋白维持其切线方向,并且仅与网络延伸非常微弱地对齐。对于完整的膜蛋白Band 3,也发现了类似的结果。考虑到热波动,我们得出了网络剪切力和原丝方位角之间有效耦合常数α的界线。 α必须比其紧密耦合值低一个数量级或更多的发现说明了纳米结构运动学如何能够与更多的宏观响应脱钩。大约10 nm分辨率的血影蛋白肌动蛋白网络的蒙特卡洛模拟进一步支持了这一结论,并证实了作为高温纺丝玻璃元件的原丝图像。

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