Nunthaboot Nadtanet, Lugsanangarm Kiattisak, Pianwanit Somsak, Kokpol Sirirat, Tanaka Fumio, Nakanishi Takeshi, Kitamura Masaya
Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, Mahasarakham University, Mahasarakham, 44150, Thailand.
Program of Chemistry, Faculty of Science and Technology, Bansomdej Chaopraya Rajabhat University, Bangkok 10600, Thailand.
Comput Biol Chem. 2016 Oct;64:113-125. doi: 10.1016/j.compbiolchem.2016.05.007. Epub 2016 May 27.
The structural and dynamical properties of five FMN binding protein (FBP) dimers, WT (wild type), E13K (Glu13 replaced by Lys), E13R (Glu13 replaced by Arg), E13T (Glu13 replaced by Thr) and E13Q (Glu13 replaced by Gln), were investigated using a method of molecular dynamics simulation (MDS). In crystal structures, subunit A (Sub A) and subunit B (Sub B) were almost completely equivalent in all of the five FBP dimers. However, the predicted MDS structures of the two subunits were not equivalent in solution, revealed by the distances and inter-planar angles between isoalloxazine (Iso) and aromatic amino acids (Trp32, Tyr35 and Trp106) as well as the hydrogen bonding pairs between Iso and nearby amino acids. Residue root of mean square fluctuations (RMSF) also displayed considerable differences between Sub A and Sub B and in the five FBP dimers. The dynamics of the whole protein structures were examined with the distance (RNN) between the peptide N atom of the N terminal (Met1) and the peptide N atom of the C terminal (Leu122). Water molecules were rarely accessible to Iso in all FBP dimers which are in contrast with other flavoenzymes.
利用分子动力学模拟(MDS)方法研究了五种黄素单核苷酸结合蛋白(FBP)二聚体的结构和动力学性质,这五种二聚体分别是野生型(WT)、E13K(第13位谷氨酸被赖氨酸取代)、E13R(第13位谷氨酸被精氨酸取代)、E13T(第13位谷氨酸被苏氨酸取代)和E13Q(第13位谷氨酸被谷氨酰胺取代)。在晶体结构中,在所有这五种FBP二聚体中,亚基A(Sub A)和亚基B(Sub B)几乎完全等同。然而,通过异咯嗪(Iso)与芳香族氨基酸(Trp32、Tyr35和Trp106)之间的距离和平面间角度以及Iso与附近氨基酸之间的氢键对显示,这两个亚基在溶液中的预测MDS结构并不等同。亚基A和亚基B之间以及在这五种FBP二聚体中,残基均方根波动(RMSF)也显示出相当大的差异。利用N端肽段N原子(Met1)与C端肽段N原子(Leu122)之间的距离(RNN)来研究整个蛋白质结构的动力学。与其他黄素酶相反,在所有FBP二聚体中,Iso很少能接触到水分子。