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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Development of a Coarse-Grained Model of Collagen-Like Peptide (CLP) for Studies of CLP Triple Helix Melting
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Development of a Coarse-Grained Model of Collagen-Like Peptide (CLP) for Studies of CLP Triple Helix Melting

机译:用于研究CLP三重螺旋熔化的胶原样肽(CLP)粗粒模型的研制

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摘要

In this paper, we present the development of a phenomenological coarse-grained model that represents single strands of collagen-like peptides (CLPs) as well as CLP triple helices. The goal of this model development is to enable coarse grained molecular simulations of solutions of CLPs and conjugates of CLPs with other macromolecules and to predict trends in the CLP melting temperature with varying CLP design, namely CLP length and composition. Since the CLP triple helix is stabilized primarily by hydrogen bonds between amino acids in adjacent strands, for modeling CLP melting we get inspiration from a recent coarse-grained (CG) model that was used to capture specific and directional hydrogen-bonding interactions in base-pair hybridization within oligonucleotides and reproduced known DNA melting trends with DNA sequence and composition in implicit water. In this paper, we systematically describe the changes we make to this original CG model and then show that these improvements reproduce the known melting trends of CLPs seen in past experiments. Specifically, the CG simulations of CLP solutions at experimentally relevant concentrations show increasing melting temperature with increasing CLP length and decreasing melting temperature with incorporation of charged residues in place of uncharged residues in the CLP, in agreement with past experimental observations. Finally, results from simulations of CLP triple helices conjugated with elastin like peptides (ELPs), using this new CG model of CLP, reproduce the same trends in ELP aggregation as seen in past experiments.
机译:在本文中,我们展示了一种现象学粗粒模型的发展,其代表单链的胶原蛋白样肽(CLPS)以及CLP三螺旋。该模型开发的目的是使CLP和CLP的缀合物的溶液和CLP缀合物与其他大分子的溶液进行粗粒化分子模拟,并通过不同的CLP设计预测CLP熔化温度的趋势,即CLP长度和组成。由于CLP三重螺旋主要通过相邻股线中的氨基酸之间的氢键稳定,因此用于对CLP熔化进行建模,我们得到了最近粗粒(CG)模型的启发,用于捕获基部的特定和定向氢键相互作用对寡核苷酸内的对杂交,并在隐含水中再现已知的DNA熔化趋势和含水中的组合物。在本文中,我们系统地描述了我们对此原始CG模型的变化,然后表明这些改进再现了过去实验中所见的CLP的已知熔化趋势。具体地,在实验相关浓度下CLP溶液的CG模拟显示出熔化温度的增加,随着CLP长度的增加,掺入带电残余物的熔化温度降低,代替CLP中的不带电残留物,同意过去的实验观察结果。最后,利用肽(ELP)缀合的CLP三重螺旋的模拟结果,使用这种新的CG模型的CLP模型,在过去的实验中看到的ELP聚集中的相同趋势再现。

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