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A transferable coarse-grained model for diphenylalanine: how to represent an environment driven conformational transition

机译:二苯丙氨酸的可转移粗粒度模型:如何表示环境驱动的构象转变

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摘要

One of the major challenges in the development of coarse grained (CG) simulation models that aim at biomolecular structure formation processes is the correct representation of an environment-driven conformational change, for example, a folding/unfolding event upon interaction with an interface or upon aggregation. In the present study, we investigate this transferability challenge for a CG model using the example of diphenylalanine. This dipeptide displays a transition from a trans-like to a cis-like conformation upon aggregation as well as upon transfer from bulk water to the cyclohexane/water interface. Here, we show that one can construct a single CG model that can reproduce both the bulk and interface conformational behavior and the segregation between hydrophobic/hydrophilic medium. While the general strategy to obtain nonbonded interactions in the present CG model is to reproduce solvation free energies of small molecules representing the CG beads in the respective solvents, the success of the model strongly depends on nontrivial decisions one has to make to capture the delicate balance between the bonded and nonbonded interactions. In particular, we found that the peptide's conformational behavior is qualitatively affected by the cyclohexane/water interaction potential, an interaction that does not directly involve the peptide at all but merely influences the properties of the hydrophobic/hydrophilic interface. Furthermore, we show that a small modification to improve the structural/conformational properties of the CG model could dramatically alter the thermodynamic properties. (C) 2013 AIP Publishing LLC.
机译:针对生物分子结构形成过程的粗粒(CG)模拟模型开发中的主要挑战之一是环境驱动构象变化的正确表示,例如,与界面相互作用或相互作用时的折叠/展开事件聚合。在本研究中,我们以二苯丙氨酸为例,研究了CG模型的可转移性挑战。该二肽在聚集时以及从大量水转移到环己烷/水界面时显示出从反式构象到顺式样构象的过渡。在这里,我们表明一个人可以构建一个可以重现体积和界面构象行为以及疏水性/亲水性介质分离的CG模型。尽管在当前CG模型中获得非键相互作用的一般策略是在各个溶剂中重现代表CG珠的小分子的溶剂化自由能,但模型的成功很大程度上取决于人们必须做出的非平凡决定才能捕捉到微妙的平衡在键合和非键合相互作用之间。特别是,我们发现该肽的构象行为在质量上受环己烷/水相互作用潜能的影响,这种相互作用根本不直接涉及该肽,而仅影响疏水/亲水界面的性质。此外,我们表明,对改进CG模型的结构/构象性质进行小的修改可能会极大地改变热力学性质。 (C)2013 AIP Publishing LLC。

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