Masson Patrick, Froment Marie-Thérèse, Gillon Emilie, Nachon Florian, Lockridge Oksana, Schopfer Lawrence M
Unité d'Enzymologie, Département de Toxicologie, Centre de Recherches du Service de Santé des Armées, La Tronche Cedex, France.
FEBS J. 2008 May;275(10):2617-31. doi: 10.1111/j.1742-4658.2008.06409.x. Epub 2008 Apr 15.
The effects of tyramine, serotonin and benzalkonium on the esterase and aryl acylamidase activities of wild-type human butyrylcholinesterase and its peripheral anionic site mutant, D70G, were investigated. The kinetic study was carried out under steady-state conditions with neutral and positively charged aryl acylamides [o-nitrophenylacetanilide, o-nitrotrifluorophenylacetanilide and m-(acetamido) N,N,N-trimethylanilinium] and homologous esters (o-nitrophenyl acetate and acetylthiocholine). Tyramine was an activator of hydrolysis for neutral substrates and an inhibitor of hydrolysis for positively charged substrates. The affinity of D70G for tyramine was lower than that of the wild-type enzyme. Tyramine activation of hydrolysis for neutral substrates by D70G was linear. Tyramine was found to be a pure competitive inhibitor of hydrolysis for positively charged substrates with both wild-type butyrylcholinesterase and D70G. Serotonin inhibited both esterase and aryl acylamidase activities for both positively charged and neutral substrates. Inhibition of wild-type butyrylcholinesterase was hyperbolic (i.e. partial) with neutral substrates and linear with positively charged substrates. Inhibition of D70G was linear with all substrates. A comparison of the effects of tyramine and serotonin on D70G versus the wild-type enzyme indicated that: (a) the peripheral anionic site is involved in the nonlinear activation and inhibition of the wild-type enzyme; and (b) in the presence of charged substrates, the ligand does not bind to the peripheral anionic site, so that ligand effects are linear, reflecting their sole interaction with the active site binding locus. Benzalkonium acted as an activator at low concentrations with neutral substrates. High concentrations of benzalkonium caused parabolic inhibition of the activity with neutral substrates for both wild-type butyrylcholinesterase and D70G, suggesting multiple binding sites. Benzalkonium caused linear, noncompetitive inhibition of the positively charged aryl acetanilide m-(acetamido) N,N,N-trimethylanilinium for D70G, and an unusual mixed-type inhibition/activation (alpha > beta > 1) for wild-type butyrylcholinesterase with this substrate. No fundamental difference was observed between the effects of ligands on the butyrylcholinesterase-catalysed hydrolysis of esters and amides. Thus, butyrylcholinesterase uses the same machinery, i.e. the catalytic triad S198/H448/E325, for the hydrolysis of both types of substrate. The differences in response to ligand binding depend on whether the substrates are neutral or positively charged, i.e. the differences depend on the function of the peripheral site in wild-type butyrylcholinesterase, or the absence of its function in the D70G mutant. The complex inhibition/activation effects of effectors, depending on the integrity of the peripheral anionic site, reflect the allosteric 'cross-talk' between the peripheral anionic site and the catalytic centre.
研究了酪胺、5-羟色胺和苯扎氯铵对野生型人丁酰胆碱酯酶及其外周阴离子位点突变体D70G的酯酶和芳基酰基酰胺酶活性的影响。动力学研究在稳态条件下进行,使用中性和带正电荷的芳基酰胺[邻硝基苯乙酰苯胺、邻硝基三氟苯乙酰苯胺和间(乙酰氨基)N,N,N-三甲基苯胺]以及同源酯(乙酸邻硝基苯酯和乙酰硫代胆碱)。酪胺对中性底物是水解激活剂,对带正电荷的底物是水解抑制剂。D70G对酪胺的亲和力低于野生型酶。D70G对中性底物的酪胺水解激活作用呈线性。发现酪胺对野生型丁酰胆碱酯酶和D70G的带正电荷底物水解均为纯竞争性抑制剂。5-羟色胺对带正电荷和中性底物的酯酶和芳基酰基酰胺酶活性均有抑制作用。对野生型丁酰胆碱酯酶,对中性底物的抑制呈双曲线型(即部分抑制),对带正电荷底物的抑制呈线性。对D70G,对所有底物的抑制均呈线性。酪胺和5-羟色胺对D70G与野生型酶作用的比较表明:(a)外周阴离子位点参与野生型酶的非线性激活和抑制;(b)在带电荷底物存在下,配体不与外周阴离子位点结合,因此配体效应呈线性,反映了它们与活性位点结合部位的唯一相互作用。苯扎氯铵在低浓度时对中性底物起激活剂作用。高浓度苯扎氯铵对野生型丁酰胆碱酯酶和D70G的中性底物活性均产生抛物线型抑制,提示存在多个结合位点。苯扎氯铵对D70G的带正电荷芳基乙酰苯胺间(乙酰氨基)N,N,N-三甲基苯胺产生线性非竞争性抑制,对野生型丁酰胆碱酯酶与该底物产生异常的混合型抑制/激活(α>β>1)。未观察到配体对丁酰胆碱酯酶催化的酯和酰胺水解作用有根本差异。因此,丁酰胆碱酯酶使用相同的机制,即催化三联体S198/H448/E325,来水解这两种类型的底物。对配体结合反应的差异取决于底物是中性还是带正电荷,即差异取决于野生型丁酰胆碱酯酶中外周位点的功能,或D70G突变体中其功能的缺失。效应物的复杂抑制/激活作用,取决于外周阴离子位点的完整性,反映了外周阴离子位点与催化中心之间的变构“串扰”。