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首页> 外文期刊>Journal of Molecular Biology >Membrane Binding and Self-Association of the Epsin N-Terminal Homology Domain
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Membrane Binding and Self-Association of the Epsin N-Terminal Homology Domain

机译:Epsin N端同源域的膜结合和自缔合

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Epsin possesses a conserved epsin N-terminal homology (ENTH) domain that acts as a phosphatidylinositol 4,5-bisphosphate-lipid-targeting and membrane-curvature-generating element. Upon binding phosphatidylino-sitol 4,5-bisphosphate, the N-terminal helix (H 0) of the ENTH domain becomes structured and aids in the aggregation of ENTH domains, which results in extensive membrane remodeling. In this article, atomistic and coarse-grained (CG) molecular dynamics (MD) simulations are used to investigate the structure and the stability of ENTH domain aggregates on lipid bilayers. EPR experiments are also reported for systems composed of different ENTH-bound membrane morphologies, including membrane vesicles as well as preformed membrane tubules. The EPR data are used to help develop a molecular model of ENTH domain aggregates on preformed lipid tubules that are then studied by CG MD simulation. The combined computational and experimental approach suggests that ENTH domains exist predominantly as monomers on vesiculated structures, while ENTH domains self-associate into dimeric structures and even higher-order oligomers on the membrane tubes. The results emphasize that the arrangement of ENTH domain aggregates depends strongly on whether the local membrane curvature is isotropic or anisotropic. The molecular mechanism of ENTH-domain-induced membrane vesiculation and tubula-tion and the implications of the epsin's role in clathrin-mediated endocytosis resulting from the interplay between ENTH domain membrane binding and ENTH domain self-association are also discussed.
机译:Epsin具有保守的epsin N末端同源性(ENTH)结构域,可作为磷脂酰肌醇4,5-双磷酸酯-脂质靶向和膜曲率产生元件。结合磷脂酰肌醇-4,5-二磷酸酯后,ENTH结构域的N末端螺旋(H 0)变得结构化并有助于ENTH结构域的聚集,从而导致广泛的膜重塑。在本文中,原子和粗粒度(CG)分子动力学(MD)模拟用于研究脂质双层上ENTH域聚集体的结构和稳定性。还报道了由不同的ENTH结合的膜形态组成的系统的EPR实验,包括膜囊泡和预制的膜小管。 EPR数据用于帮助建立预先形成的脂质小管上ENTH域聚集体的分子模型,然后通过CG MD模拟对其进行研究。计算和实验相结合的方法表明,ENTH结构域主要以单体形式存在于孔状结构中,而ENTH结构域则自缔合为二聚体结构,甚至在膜管上也具有更高的低聚物。结果强调,ENTH域聚集体的排列在很大程度上取决于局部膜曲率是各向同性还是各向异性。还讨论了ENTH域诱导膜囊泡化和肾小管形成的分子机制,以及因ENTH域膜结合与ENTH域自缔合之间相互作用而引起的epsin在网格蛋白介导的内吞作用中的作用。

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