核运输
核孔
生物物理学
动力学
跑
化学
联轴节(管道)
机制(生物学)
扩散
布朗动力学
转运蛋白
促进扩散
分子动力学
生物系统
膜转运
瞬态(计算机编程)
模型系统
布朗运动
航程(航空)
物理
统计物理学
构造(python库)
被动运输
分子模型
输运现象
分子机器
作者
Barak Raveh,Roi Eliasian,Shaked Rashkovits,Daniel Russel,Ryo Hayama,Samuel Sparks,Digvijay Singh,Roderick Y. H. Lim,Elizabeth Villa,Michael P. Rout,David Cowburn,Andrej Săli
标识
DOI:10.1073/pnas.2507559122
摘要
Nuclear pore complexes (NPCs) enable rapid, selective, and robust nucleocytoplasmic transport. To explain how transport emerges from the system components and their interactions, we used experimental data and theoretical information to construct an integrative Brownian dynamics model of transport through an NPC, coupled to a kinetic model of transport in the cell. The model recapitulates key aspects of transport for a wide range of molecular cargoes, including preribosomes and viral capsids. Our model quantifies how flexible phenylalanine-glycine (FG) repeat proteins create an entropic barrier to passive diffusion and how this barrier is selectively lowered in facilitated diffusion by the many transient interactions of nuclear transport receptors with the FG repeats. Selective transport is enhanced by "fuzzy" multivalent interactions, redundant FG repeat mass, coupling to the energy-dependent RanGTP concentration gradient, and exponential dependence of transport kinetics on the transport barrier. Our model will facilitate rational modulation of the NPC and its artificial mimics.
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