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The role of traction in membrane curvature generation

机译:牵引在膜曲率产生中的作用

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Curvature of biological membranes can be generated by a variety of molecular mechanisms including protein scaffolding, compositional heterogeneity, and cytoskeletal forces. These mechanisms have the net effect of generating tractions (force per unit length) on the bilayer that are translated into distinct shapes of the membrane. Here, we demonstrate how the local shape of the membrane can be used to infer the traction acting locally on the membrane. We show that buds and tubes, two common membrane deformations studied in trafficking processes, have different traction distributions along the membrane and that these tractions are specific to the molecular mechanism used to generate these shapes. Furthermore, we show that the magnitude of an axial force applied to the membrane as well as that of an effective line tension can be calculated from these tractions. Finally, we consider the sensitivity of these quantities with respect to uncertainties in material properties and follow with a discussion on sources of uncertainty in membrane shape.
机译:生物膜的曲率可以通过各种分子机制产生,包括蛋白质支架,组成异质性和细胞骨骼力。这些机制具有在双层上产生牵引(每单位长度的力)的净效果,所述双层在膜的不同形状中翻译成膜。这里,我们证明了膜的局部形状如何用于推断在膜上局部作用的牵引力。我们展示芽和管,在贩运过程中研究的两个常见的膜变形,沿膜具有不同的牵引分布,并且这些牵引力是特定于用于产生这些形状的分子机制。此外,我们表明,施加到膜的轴向力以及有效线张力的大小可以从这些诉讼计算。最后,我们考虑这些数量相对于材料特性的不确定性的敏感性,并遵循膜形状的不确定性来源。

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