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Solution Study of Engineered Quartz Binding Peptides Using Replica Exchange Molecular Dynamics

机译:利用复制交换分子动力学研究工程化石英结合肽的溶液

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摘要

We use replica-exchange molecular dynamics (REMD) to interrogate molecular structures and properties of four engineered dodecapeptides (in solution, in the absence of a surface) that have been shown to bind to quartz with different propensities. We find that all of the strong-binding peptides feature some polyproline type II secondary structure, have less conformational freedom, and feature fewer intrapeptide hydrogen bonds compared with the weak binder. The regions of contiguous proline content in a given sequence appear to play a role in fostering some of these properties of the strong binders. For preliminary insights into quartz binding, we perform lattice-matching studies between a grid corresponding with the quartz (100) surface and the strong-binding peptide REMD structures. Our findings indicate a commonality among the putative contact residues, even for peptide structures with very different backbone conformations. Furthermore, interpeptide interactions in solution are studied. Our preliminary findings indicate that the strong-binder interpeptide contacts are dominated by weak, nonspecific hydrophobic interactions, while the weak-binding peptide shows more variable behavior due to the distribution of charged residues. In summary, the solution structures of peptides appear to be significant. We propose that these differences in their intra- and interpeptide interactions can influence their propensity to bind onto a solid substrate.
机译:我们使用复制-交换分子动力学(REMD)来研究四种工程化的十二肽(在溶液中,没有表面的情况下)的分子结构和特性,这些肽已显示出以不同的倾向与石英结合。我们发现,与弱结合剂相比,所有强结合肽均具有某些聚脯氨酸II型二级结构,构象自由度较小,且内肽氢键较少。给定序列中脯氨酸含量连续的区域似乎在促进强结合剂的这些特性中发挥了作用。为了初步了解石英结合,我们在与石英(100)表面相对应的网格与强结合肽REMD结构之间进行晶格匹配研究。我们的发现表明,即使对于具有非常不同的主链构象的肽结构,推定的接触残基也具有共同性。此外,研究了溶液中的肽间相互作用。我们的初步发现表明,强结合剂间肽接触主要由弱的非特异性疏水相互作用所主导,而弱结合的肽由于带电残基的分布而表现出更多的可变行为。总之,肽的溶液结构似乎很重要。我们提出,它们在肽内和肽间相互作用中的这些差异可以影响它们结合到固体基质上的倾向。

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