对非编码氨基酸亲脂性的理解:脯氨酸类似物的计算模拟

Paulina Matamoros, Silvana Pinheiro, Antonio Viayna, William J. Zamora
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引用次数: 0

摘要

氨基酸是形成被称为蛋白质的生物聚合物的主干。其中一种,脯氨酸,可以在胶原蛋白中高浓度发现,这种蛋白质对皮肤、肌腱、骨骼和结缔组织最具支持作用,促进它们的健康和恢复。本文利用量子力学隐式溶剂化模型SMD计算了25种非编码脯氨酸类似物的亲脂性。与实验数据比较,分配系数的均方根误差(rmse)为0.72 (log P单位)。总之,这些结果支持SMD溶剂化模型用于计算脯氨酸类似物中正辛醇/水分配系数的适用性,该模型可用于调节仿生合成肽的疏水性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards an Understanding of the Lipophilicity of Non-Coded Amino Acids: Computational Simulations of Proline Analogs
Amino acids are the backbone for the formation of biopolymers known as proteins. One of them, proline, can be found in high concentrations in collagen, being this protein the most supportive for the skin, tendons, bones, and connective tissue, promoting their health and recovery. Here, we compute the lipophilicity of 25 non-coded proline analogs using the quantum mechanics implicit solvation model SMD. Comparison with the experimental data provided for partition coefficients yielded a root-mean square error (rmse) of 0.72 (log P units). Overall, the results support the appropriateness of SMD solvation model for computing the n-octanol/water partition coefficient in proline analogs, which can be used to tune the hydrophobic properties of bioinspired synthetic peptides.
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