Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, Mahasarakham University, Mahasarakham 44150, Thailand.
Program of General Science, Faculty of Science and Technology, Thepsatri Rajabhat University, Lopburi 15000, Thailand.
Comput Biol Chem. 2018 Feb;72:96-104. doi: 10.1016/j.compbiolchem.2018.01.001. Epub 2018 Jan 12.
The electrostatic (ES) energy of each residue was for the first time quantitatively evaluated in a flavin mononucleotide binding protein (FBP). A residue electrostatic energy (RES) was obtained as the sum of the ES energies between atoms in each residue and all other atoms in the FBP dimer using atomic coordinates obtained by a molecular dynamics (MD) simulation. ES is one of the most important energies among the interaction energies in a protein. It is determined from the RES, the residues which mainly contribute to stabilize the structure of each subunit, and the binding energy between two subunits can be estimated. The RES of all residues in subunit A (Sub A) and subunit B (Sub B) were attractive forces, even though the residues contain net negative or positive charges. This reveals that the ES energies of any of the residues can contribute to stabilize the protein structure. The total binding ES energy over all residues among the subunits was distributed between -0.2 to -1.2 eV (mean = -0.67 eV) from the MD simulation time.
首次在黄素单核苷酸结合蛋白(FBP)中定量评估了每个残基的静电(ES)能。残基静电能(RES)是通过分子动力学(MD)模拟获得的原子坐标,计算每个残基中原子与 FBP 二聚体中所有其他原子之间的 ES 能得到的。ES 能是蛋白质相互作用能中最重要的能量之一。它由 RES 决定,RES 主要决定每个亚基的结构稳定性,并且可以估计两个亚基之间的结合能。亚基 A(Sub A)和亚基 B(Sub B)中所有残基的 RES 都是吸引力,即使这些残基含有净负电荷或正电荷。这表明任何残基的 ES 能都可以有助于稳定蛋白质结构。从 MD 模拟时间来看,亚基之间所有残基的总结合 ES 能分布在-0.2 到-1.2 eV(平均值为-0.67 eV)之间。