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Influence of thermally driven surface undulations on tethers formed from bilayer membranes

机译:热驱动表面起伏对双层膜形成的系链的影响

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摘要

Tether formation is a powerful method to study the mechanical properties of soft lipid bilayer membranes. The force required to maintain a tether at a given length depends upon both membrane elastic properties and tension. In this report, we develop a theoretical analysis that considers the contribution of thermally driven surface undulations and the corresponding entropically driven tensions on the conformation of tethers formed from unaspirated lipid vesicles. In this model, thermal undulations of the vesicle surface provide the excess area required for tether formation. Energy minimization demonstrates the dependence of equilibrium tether conformation on membrane tension and provides an analytical relationship between tether force and radius. If the contributions of nonlocal bending are not considered, an analytical relationship between tether force and length can also be obtained. The predictions of the model are compared to recently reported experimental data, and a value for the initial vesicle tension is obtained. Since most analyses of tether formation from cells and unaspirated vesicles neglect the contributions of nonlocal bending, the appropriateness of this assumption is analyzed. The effect of surface microvesiculations on the tether force-length relation is also considered.
机译:系链形成是研究软脂质双层膜力学性能的有力方法。将绳索保持在给定长度所需的力取决于膜的弹性和张力。在本报告中,我们开发了一种理论分析,其中考虑了热驱动表面起伏的作用以及相应的熵驱动张力对由未吸入脂质囊形成的系链构象的影响。在该模型中,囊泡表面的热起伏提供了系链形成所需的多余区域。能量最小化证明了平衡系绳构象对膜张力的依赖性,并提供了系绳力和半径之间的分析关系。如果不考虑非局部弯曲的影响,则还可以得到系绳力和长度之间的解析关系。将模型的预测与最近报告的实验数据进行比较,并获得初始囊泡张力的值。由于大多数从细胞和未吸气囊泡形成系绳的分析都忽略了非局部弯曲的作用,因此分析了这种假设的适当性。还考虑了表面微囊泡对系链力-长度关系的影响。

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