Kueh Rowyna, Rahman Noorsaadah Abdul, Merican Amir Feisal
Institute of Biological Sciences, Faculty of Science, University of Malaya, 50603, Kuala Lumpur, Malaysia.
J Mol Model. 2003 Apr;9(2):88-98. doi: 10.1007/s00894-002-0115-8. Epub 2003 Mar 1.
The arginine repressor (ArgR) of Escherichia coli binds to six L-arginine molecules that act as its co-repressor in order to bind to DNA. The binding of L-arginine molecules as well as its structural analogues is compared by means of computational docking. A grid-based energy evaluation method combined with a Monte Carlo simulated annealing process was used in the automated docking. For all ligands, the docking procedure proposed more than one binding site in the C-terminal domain of ArgR (ArgRc). Interaction patterns of ArgRc with L-arginine were also observed for L-canavanine and L-citrulline. L-lysine and L-homoarginine, on the other hand, were shown to bind poorly at the binding site. Figure A general overview of the sites found from docking the various ligands into ArgRc ( grey ribbons). Red coloured sticks: residues in binding site H that was selected for docking
大肠杆菌的精氨酸阻遏物(ArgR)与六个L-精氨酸分子结合,这些L-精氨酸分子作为其共阻遏物以结合到DNA上。通过计算对接比较L-精氨酸分子及其结构类似物的结合情况。在自动对接中使用了基于网格的能量评估方法并结合蒙特卡罗模拟退火过程。对于所有配体,对接程序在ArgR的C末端结构域(ArgRc)中提出了不止一个结合位点。对于L-刀豆氨酸和L-瓜氨酸,也观察到了ArgRc与L-精氨酸的相互作用模式。另一方面,L-赖氨酸和L-高精氨酸在结合位点的结合较差。图 将各种配体对接至ArgRc(灰色带)中发现的位点的总体概述。红色棍棒状:为对接而选择的结合位点H中的残基