Tara S, Elcock A H, Kirchhoff P D, Briggs J M, Radic Z, Taylor P, McCammon J A
Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla 92093-0365, USA.
Biopolymers. 1998 Dec;46(7):465-74. doi: 10.1002/(SICI)1097-0282(199812)46:7<465::AID-BIP4>3.0.CO;2-Y.
It is known that anionic surface residues play a role in the long-range electrostatic attraction between acetylcholinesterase and cationic ligands. In our current investigation, we show that anionic residues also play an important role in the behavior of the ligand within the active site gorge of acetylcholinesterase. Negatively charged residues near the gorge opening not only attract positively charged ligands from solution to the enzyme, but can also restrict the motion of the ligand once it is inside of the gorge. We use Brownian dynamics techniques to calculate the rate constant kon, for wild type and mutant acetylcholinesterase with a positively charged ligand. These calculations are performed by allowing the ligand to diffuse within the active site gorge. This is an extension of previously reported work in which a ligand was allowed to diffuse only to the enzyme surface. By setting the reaction criteria for the ligand closer to the active site, better agreement with experimental data is obtained. Although a number of residues influence the movement of the ligand within the gorge, Asp74 is shown to play a particularly important role in this function. Asp74 traps the ligand within the gorge, and in this way helps to ensure a reaction.
已知阴离子表面残基在乙酰胆碱酯酶与阳离子配体之间的长程静电吸引中起作用。在我们目前的研究中,我们表明阴离子残基在乙酰胆碱酯酶活性位点峡谷内配体的行为中也起重要作用。峡谷开口附近带负电荷的残基不仅能将溶液中带正电荷的配体吸引到酶上,而且一旦配体进入峡谷,还能限制其运动。我们使用布朗动力学技术计算野生型和带正电荷配体的突变型乙酰胆碱酯酶的速率常数kon。这些计算是通过让配体在活性位点峡谷内扩散来进行的。这是对先前报道工作的扩展,在先前的工作中,配体仅被允许扩散到酶表面。通过将配体的反应标准设置得更靠近活性位点,能获得与实验数据更好的一致性。尽管许多残基会影响配体在峡谷内的运动,但Asp74在该功能中起着特别重要的作用。Asp74将配体捕获在峡谷内,从而有助于确保反应的发生。