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Membrane Shape As A Reporter For Applied Forces

机译:膜形状作为外力报告者

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摘要

Recent advances have enabled 3-dimensional reconstructions of biological structures in vivo, ranging in size and complexity from single proteins to multicellular structures. In particular, tomography and confocal microscopy have been exploited to capture detailed 3-dimensional conformations of membranes in cellular processes ranging from viral budding and organelle maintenance to phagocytosis. Despite the wealth of membrane structures available, there is as yet no generic, quantitative method for their interpretation. We propose that by modeling these observed biomembrane shapes as fluid lipid bilayers in mechanical equilibrium, the externally applied forces as well as the pressure, tension, and spontaneous curvature can be computed directly from the shape alone. To illustrate the potential power of this technique, we apply an axial force with optical tweezers to vesicles and explicitly demonstrate that the applied force is equal to the force computed from the membrane conformation.
机译:最近的进展使得能够在体内对生物结构进行3维重建,其大小和复杂程度从单个蛋白质到多细胞结构不等。特别是,层析成像和共聚焦显微镜已被用来捕获从病毒出芽和细胞器维持到吞噬作用的细胞过程中膜的详细3维构象。尽管可用的膜结构丰富,但尚无通用的定量方法来解释它们。我们建议通过将这些观察到的生物膜形状建模为机械平衡中的流体脂质双层,可以单独从形状中直接计算外部施加的力以及压力,张力和自发曲率。为了说明该技术的潜力,我们用光镊将轴向力施加到囊泡上,并明确证明所施加的力等于从膜构象计算出的力。

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