Srivastava Alka, Balaji Petety V
Department of Biosciences and Bioengineering, Indian Institute of Technology Bombay, Powai, Mumbai 400 076, India.
Department of Biosciences and Bioengineering, Indian Institute of Technology Bombay, Powai, Mumbai 400 076, India.
J Struct Biol. 2015 Dec;192(3):376-391. doi: 10.1016/j.jsb.2015.09.020. Epub 2015 Oct 6.
This study probes the early events during lag phase of aggregation of GNNQQNY using all atom MD simulations in explicit solvent. Simulations were performed by varying system size, temperature and starting configuration. Peptides dispersed randomly in the simulation box come together early on in the simulation and form aggregates. These aggregates are dynamic implying the absence of stabilizing interactions. This facilitates the exploration of alternate arrangements. The constituent peptides sample a variety of conformations, frequently re-orient and re-arrange with respect to each other and dissociate from/re-associate with the aggregate. The size and lifetime of aggregates vary depending upon the number of inter-peptide backbone H-bonds. Most of the aggregates formed are amorphous but crystalline aggregates of smaller size (mainly 2-mers) do appear and sustain for varying durations of time. The peptides in crystalline 2-mers are mostly anti-parallel. The largest crystalline aggregate that appears is a 4-mer in a single sheet and a 4-, 5-, or 6-mer in double layered arrangement. Crystalline aggregates grow either by the sequential addition of peptides, or by the head-on or lateral collision-adhesion of 2-mers. The formation of various smaller aggregates suggests the polymorphic nature of oligomers and heterogeneity in the lag phase.
本研究使用显式溶剂中的全原子分子动力学模拟,探究了GNNQQNY聚集延迟期的早期事件。通过改变系统大小、温度和初始构型进行模拟。在模拟中随机分散在模拟盒中的肽段在模拟早期聚集在一起并形成聚集体。这些聚集体是动态的,这意味着不存在稳定的相互作用。这有利于探索其他排列方式。组成肽段呈现出多种构象,它们经常相互重新定向和重新排列,并与聚集体解离或重新结合。聚集体的大小和寿命取决于肽段间主链氢键的数量。形成的大多数聚集体是无定形的,但较小尺寸(主要是二聚体)的晶体聚集体确实会出现并持续不同的时间。晶体二聚体中的肽段大多是反平行的。出现的最大晶体聚集体是单层的四聚体和双层排列的四聚体、五聚体或六聚体。晶体聚集体通过肽段的顺序添加,或通过二聚体的正面或侧面碰撞粘附而生长。各种较小聚集体的形成表明了寡聚体的多态性和延迟期的异质性。