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网格蛋白包被膜内陷的竞争途径。

Competing pathways for the invagination of clathrin-coated membranes.

机构信息

Institute for Theoretical Physics, Heidelberg University, Philosophenweg 19, 69120 Heidelberg, Germany.

出版信息

Soft Matter. 2020 Dec 16;16(47):10723-10733. doi: 10.1039/d0sm01375g.

Abstract

Clathrin-mediated endocytosis is the major pathway by which eukaryotic cells take up extracellular material, but it is still elusive which physical pathways are being taken during membrane invagination. From a continuum point of view, it can be driven by increases in coat stiffness, preferred curvature or line tension. Here we develop a comprehensive theoretical framework that can be solved analytically and that predicts the consequences of these different scenarios. We find that for the case of increasing stiffness or preferred curvature, curvature will be acquired gradually with growth, while for increasing line tension, the lattice must have grown to a certain size before a flat-to-curved transition can occur. At low membrane tension, the critical value for coat stiffness is 30 kBT, for preferred curvature it is 200 nm, and for line tension it is 6 pN. For high membrane tension, critical coat stiffness is 150 kBT and critical preferred curvature is 70 nm. In the mixed case when a coat with finite rigidity but increasing line tension is considered, a cup-to-sphere transition can occur for a line tension of 6 pN. The flat-to-curved and the cup-to-sphere transitions driven by line tension are both suppressed by high membrane tension.

摘要

网格蛋白介导的内吞作用是真核细胞摄取细胞外物质的主要途径,但在膜内陷过程中采用哪种物理途径仍不清楚。从连续体的角度来看,它可以由外壳硬度的增加、优选曲率或线张力来驱动。在这里,我们开发了一个全面的理论框架,可以进行分析求解,并预测这些不同情况的后果。我们发现,对于增加硬度或优选曲率的情况,曲率将随着生长逐渐获得,而对于增加线张力的情况,晶格必须生长到一定大小,然后才能发生从平面到曲面的转变。在低膜张力下,外壳硬度的临界值为 30 kBT,优选曲率的临界值为 200nm,线张力的临界值为 6 pN。在高膜张力下,临界外壳硬度为 150 kBT,临界优选曲率为 70nm。在线张力增加的同时,外壳具有有限的刚性时,对于 6 pN 的线张力,可以发生杯到球的转变。由线张力驱动的平面到曲面和杯到球的转变都受到高膜张力的抑制。

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