Department of Bioinformatics and Telemedicine, Jagiellonian University - Medical College Medyczna 7, 30-688, Kraków, Poland.
Faculty of Chemistry, Gdansk University, Wita Stwosza 63, 80-308, Gdańsk, Poland.
J Mol Graph Model. 2022 Jul;114:108166. doi: 10.1016/j.jmgm.2022.108166. Epub 2022 Mar 18.
During the protein folding process in computer simulations involving the use of a United RESidue (UNRES) force field, an additional module was introduced to represent directly the presence of a polar solvent in water form. This module implements the fuzzy oil drop model (FOD) where the 3D Gauss function expresses the presence of a polar environment which directs the polypeptide chain folding process towards the generation of a centric hydrophobic core. Sample test polypeptide chains of 8 proteins with chain lengths ranging from 37 to 75 aa were simulated in silico using the UNRES (U) package with an implicit solvent model and a built-in module expressing the FOD model (UNRES-FOD-UNRES (U + F) interleaved simulation). The protein structure obtained by both *** simulation schemes, i.e., accordingly***U and U + F, for all the analyzed protein models shows the presence of a hydrophobic core including where it is absent in the native structure. The proposed FOD-M model (M-modified) explaining the source of this phenomenon reveals the need to modify the external field expressing the role of a folding environment. The modification takes into account the influence of other than polar factors present in the folding environment.
在涉及使用联合残基(UNRES)力场的计算机模拟的蛋白质折叠过程中,引入了一个额外的模块来直接表示以水形式存在的极性溶剂。该模块实现了模糊油滴模型(FOD),其中 3D 高斯函数表示存在极性环境,该环境引导多肽链折叠过程生成中心疏水核。使用 UNRES(U)包和内置模块表达 FOD 模型(UNRES-FOD-UNRES(U+F)交错模拟)对长度从 37 到 75 个氨基酸残基的 8 种蛋白质的测试多肽链进行了计算机模拟。两种模拟方案(即 U 和 U+F)均获得的蛋白质结构表明存在疏水核,包括在天然结构中不存在的疏水核。解释这种现象的 FOD-M 模型(M 修饰)揭示了需要修改表达折叠环境作用的外部场。修饰考虑了折叠环境中存在的非极性因素的影响。