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调谐疏水/亲水杂多聚合物序列的球状组装。

Tuning the globular assembly of hydrophobic/hydrophilic heteropolymer sequences.

出版信息

J Phys Chem B. 2009 Oct 29;113(43):14043-6. doi: 10.1021/jp907398r.

Abstract

We propose a heteropolymer design scheme to tune monomer distributions that stabilize or destabilize the collapsed globular conformation relative to random sequencing. Polymer sequences trained via globular templating are mapped to a one-dimensional Ising-like model, and inverse Monte Carlo simulations are performed to determine an effective interaction between monomers that reproduces intrasequence correlations. Heteropolymer sequences generated using this effective interaction quantitatively reproduce the coil-to-globule transition with increasing polymer hydrophobicity observed for templated sequences. Through potential scaling, the range of transition hydrophobic fractions required to collapse the polymer opens up by a factor of 2, from a minimum fraction of 17% to a maximum of 32% for the longest polymers simulated. Collapsed conformations are favored by sequences in which there is intermediate segregation of hydrophobic and hydrophilic units along the backbone, while monomer integration favors coils.

摘要

我们提出了一种杂聚物设计方案,以调节单体分布,从而稳定或破坏相对于随机序列的折叠球状构象。通过球状模板训练的聚合物序列被映射到一维的伊辛类似模型上,并进行逆蒙特卡罗模拟,以确定再现序列内相关性的单体之间的有效相互作用。使用这种有效相互作用生成的杂聚物序列定量再现了随着聚合物疏水性增加而观察到的模板序列的从线圈到球状的转变。通过势标度,使聚合物折叠所需的转变疏水性分数的范围扩大了 2 倍,对于模拟的最长聚合物,从最小分数 17%增加到最大分数 32%。在沿主链具有疏水性和亲水性单元中等分离的序列中,折叠构象是有利的,而单体整合则有利于线圈。

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