首页> 外文期刊>Biochemistry >Does 'Butyrlization' of Acetylcholinesterase through Substitution of the Six Divergent Aromatic Amino Acids in the Active Center Gorge Generate an Enzyme Mimic of Butyrylcholinesterase?
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Does 'Butyrlization' of Acetylcholinesterase through Substitution of the Six Divergent Aromatic Amino Acids in the Active Center Gorge Generate an Enzyme Mimic of Butyrylcholinesterase?

机译:通过取代活性中心峡谷中六个不同的芳香氨基酸对乙酰胆碱酯酶的“丁酰化”是否会产生丁酰胆碱酯酶的酶模拟物?

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The active center gorge of human acetylcholinesterase (HuAChE) is lined by 14 aromatic residues, whereas in the closely related human butyrylcholinesterase (HuBChE) 3 of the aromatic active center residues (Phe295, Phe297, Tyr337) as well as 3 of the residues at the gorge entrance (Tyr72, Tyr124, Trp286) are replaced by aliphatic amino acids. To investigate whether this structural variability can account for the reactivity differences between the two enzymes, gradual replacement of up to all of the 6 aromatic residues in HuAChE by the corresponding residues in HuBChE was carried o~t. The affinities of the hexamutant (Y72N/Y124Q/W286A/F295L/F297V/Y337A) toward tacrine, decamethonium, edrophonium, huperzine A, or BW284C51 differed by about 5-, 80-, 170-, 25000-, and 17000-fold, respectively, from those of the wild-type HuAChE. For most of these prototypical noncovalent active center and peripheral site ligands, the hexamutant HuAChE displayed a reactivity phenotype closely resembling that of HuBChE. These results support the accepted view that the active center architectures of AChE and BChE differ mainly by the presence of a larger void space in BChE. Nevertheless, reactivity of the hexamutant HuAChE toward the substrates acetylthiocholine and butyrylthiocholine, or covalent ligands such as phosphonates and the transition state analogue m-(N,N,N-trimethylammonio)trifluoroac- etophenone (TMTFA), is about 45-l70-fold lower than that of HuBChE. Most of this reduction in reactivity can be related to the combined replacements of the three aromatic residues at the active center, Phe295, Phe297, and Tyr337. We propose that the hexamutant HuAChE, unlike BChE, is impaired in its capacity to accommodate certain tetrahedral species in the active center. This impairment may be related to the enhanced mobility of the catalytic histidine His447, which is observed in molecular dynamics simulations of the hexamutant and the F295L/F297V/Y337A HuAChE enzymes but not in the wild-type HuAChE.
机译:人乙酰胆碱酯酶(HuAChE)的活性中心峡谷由14个芳香族残基排列,而在紧密相关的人丁酰胆碱酯酶(HuBChE)中,芳香族活性中心残基3个(Phe295,Phe297,Tyr337)和3个残基位于峡谷入口(Tyr72,Tyr124,Trp286)被脂肪族氨基酸取代。为了研究这种结构变异性是否可以解释两种酶之间的反应性差异,对HuAChE中的HuBChE中相应的残基逐步取代了HuAChE中的全部6个芳香族残基。六突变体(Y72N / Y124Q / W286A / F295L / F297V / Y337A)对他克林,十甲铵,edrophonium,石杉碱A或BW284C51的亲和力相差约5倍,80倍,170倍,25000倍和17000倍,分别来自野生型HuAChE。对于大多数这些原型非共价活性中心和外围位点配体,六突变型HuAChE表现出与HuBChE极为相似的反应性表型。这些结果支持了公认的观点,即AChE和BChE的活动中心架构主要不同之处在于BChE中存在较大的空隙空间。然而,六突变体HuAChE对底物乙酰硫胆碱和丁酰硫胆碱或共价配体如膦酸酯和过渡态类似物间-(N,N,N-三甲基铵)三氟对乙酰苯(TMTFA)的反应性约为45-170倍低于HuBChE。这种反应性的降低大部分与活性中心的三个芳族残基Phe295,Phe297和Tyr337的组合置换有关。我们建议与BChE不同,六突变型HuAChE在活动中心容纳某些四面体物种的能力受到损害。这种损害可能与催化组氨酸His447的迁移率提高有关,这在六种突变体和F295L / F297V / Y337A HuAChE酶的分子动力学模拟中观察到,而在野生型HuAChE中则未观察到。

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