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Membrane remodeling: theoretical principles, structures of protein scaffolds and forces involved

机译:膜重塑:理论原理,蛋白质支架和力量的结构

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Cellular membranes are dynamic structures that are constantly being remodeled to exert biological functions. This chapter is subdivided into four sections. After a general introduction we review the physical principles underlying the shaping of membranes into curved configurations expressed by the Helfrich model of membrane bending elasticity. We continue by presenting examples of protein scaffolds and their structures that either sense, induce or stabilize curved membranes, such as the BAR domain family of proteins and the ESCRT complexes that catalyze membrane fission. Then, based on specific examples of physical experiments with reconstituted membrane systems, we discuss the factors involved in membrane remodeling, which can lead to membrane constriction and fission. We further describe specific forces exerted on membranes by membrane-bending proteins, molecular motors and the cytoskeleton.
机译:细胞膜是持续改造以发挥生物学功能的动态结构。本章细分为四个部分。一般介绍后,我们将膜形状的物理原理介绍成膜弯曲弹性的Helfrich模型表达的弯曲配置。我们通过呈现蛋白质支架的实例及其结构,它们是感应,诱导或稳定弯曲膜,例如催化膜裂变的蛋白质的蛋白质系列和Escrt络合物。然后,基于具有重构膜系统的物理实验的具体实例,我们讨论了膜重塑的因素,这可能导致膜收缩和裂变。我们进一步描述了通过膜 - 弯曲蛋白,分子马达和细胞骨架在膜上施加的特定力。

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