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Theoretical conformational analysis in the determination of productive conformations of substrates for acetylcholinesterase and butyrylcholinesterase

机译:测定乙酰胆碱酯酶和丁酰胆碱酯酶底物生产构象的理论构象分析

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All the equilibrium conformations of 34 analogues of acetylcholine (ACh) with the general formula R-C(O)O-Alk-N+(CH3)(3) are calculated by the method of molecular mechanics. In the series R-C(O)O-(CH2)(2)-N+(CH3)(3), a reliable correlation is found between the molecular volume of the substrate and the rate of its hydrolysis by acetylcholinesterase (AChE); the absence of such a correlation is demonstrated for butyrylcholinesterase (BChE). Theoretical conformational analysis confirms that the completely extended tt conformation of ACh is productive for the hydrolysis by AChE, which agrees with the results of X-ray analysis of AChE. AChE is shown to hydrolyze only those substrates that form equilibrium conformers compatible in the mutual arrangement of trimethylammonium group, carbonyl carbon, and carbonyl oxygen with the tt conformation of ACh; in this case, the rate of substrate hydrolysis depends on the total population of these conformers. A reliable correlation was found between the population of the semifolded (tg(-)) conformation of the choline moiety of substrate molecules and rate of their BChE hydrolysis. In a series of CH3-C(O)O-Alk-N+(CH3)(3), the rate of BChE hydrolysis is demonstrated to depend on the total population of conformations compatible in the mutual arrangement of functionally important atoms with the tg(-) conformation of ACh. The tg(-) conformation of ACh is concluded to be productive for BChE hydrolysis. Similar orientations of the substrate molecules relative to the catalytic triads of both AChE and BChE are proven to coincide upon the substrate productive sorption in their active sites. It is hypothesized that the sorption stage is rate-limiting in cholinesterase hydrolysis and the enzyme hydrolyzes the ACh molecule in its energetically favorable conformation.
机译:通过分子力学方法计算了34个乙酰胆碱(ACh)类似物的通式R-C(O)O-Alk-N +(CH3)(3)的所有平衡构象。在R-C(O)O-(CH2)(2)-N +(CH3)(3)系列中,在底物的分子体积与乙酰胆碱酯酶(AChE)的水解速率之间存在可靠的相关性;丁酰胆碱酯酶(BChE)证明没有这种相关性。理论构象分析证实,ACh完全延伸的tt构象可促进AChE水解,这与AChE的X射线分析结果一致。已显示,AChE仅水解形成平衡构象异构体的底物,该平衡构象异构体在三甲基铵基,羰基碳和羰基氧的相互排列中具有ACh的tt构象。在这种情况下,底物水解的速率取决于这些构象异构体的总数。在底物分子的胆碱部分的半折叠(tg(-))构象的种群与其BChE水解速率之间发现了可靠的相关性。在一系列的CH3-C(O)O-Alk-N +(CH3)(3)中,证明BChE水解的速率取决于功能上重要的原子与tg( -)ACh的构象。结论是ACh的tg(-)构象可用于BChE水解。底物分子相对于AChE和BChE的催化三联体的相似取向被证明与底物在其活性位点的有效吸附相吻合。假设在胆碱酯酶水解中吸附阶段是限速的,并且该酶以其能量上有利的构象水解ACh分子。

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