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通过添加各向同性自发曲率的小膜内含物来加速和抑制香蕉形蛋白诱导的管状化。

Acceleration and suppression of banana-shaped-protein-induced tubulation by addition of small membrane inclusions of isotropic spontaneous curvatures.

机构信息

Institute for Solid State Physics, University of Tokyo, Kashiwa, Chiba 277-8581, Japan.

出版信息

Soft Matter. 2017 Nov 1;13(42):7771-7779. doi: 10.1039/c7sm01375b.

Abstract

Membrane tubulation induced by banana-shaped protein rods is investigated by using coarse-grained meshless membrane simulations. It is found that tubulation is promoted by laterally isotropic membrane inclusions that generate the same sign of spontaneous curvature as the adsorbed protein rods. The inclusions are concentrated in the tubules and reduce the bending energy of the tip of the tubules. On the other hand, inclusions with an opposite curvature suppress tubulation by percolated-network formation at a high protein-rod density while they induce the formation of a spherical membrane bud at a low rod density. When equal amounts of the two types of inclusions (with positive and negative curvatures) are added, their effects cancel each other for the first short period but later the tubulation is slowly accelerated. Positive surface tension suppresses tubulation. Our results suggest that the cooperation of scaffolding of BAR (Bin/Amphiphysin/Rvs) domains and isotropic membrane inclusions is important for tubulation.

摘要

使用粗粒无网格膜模拟研究了香蕉形蛋白棒诱导的膜管化。研究发现,侧向各向同性的膜内含物促进了管化,这些内含物产生与吸附蛋白棒相同符号的自发曲率。内含物集中在管中,并降低了管尖端的弯曲能量。另一方面,在高蛋白棒密度下,具有相反曲率的内含物通过渗透网络的形成抑制管化,而在低棒密度下,它们诱导形成球形膜芽。当加入等量的两种内含物(具有正曲率和负曲率)时,它们的影响在最初的短时间内相互抵消,但后来管化会缓慢加速。正表面张力抑制管化。我们的结果表明,BAR(Bin/Amphiphysin/Rvs)结构域和各向同性膜内含物的支架合作对于管化很重要。

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