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首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Substrate activation in acetylcholinesterase induced by low pH or mutation in the π-cation subsite
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Substrate activation in acetylcholinesterase induced by low pH or mutation in the π-cation subsite

机译:低pH值或π阳离子亚位点突变引起的乙酰胆碱酯酶底物活化

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Substrate inhibition is considered a defining property of acetylcholinesterase (AChE), whereas substrate activation is characteristic of butyrylcholinesterase (BuChE). To understand the mechanism of substrate inhibition, the pH dependence of acetylthiocholine hydrolysis by AChE was studied between pH 5 and 8. Wild-type human AChE and its mutants Y337G and Y337W, as well as wild-type Bungarus fasciatus AChE and its mutants Y333G, Y333A and Y333W were studied. The pH profile results were unexpected. Instead of substrate inhibition, wild-type AChE and all mutants showed substrate activation at low pH. At high pH, there was substrate inhibition for wild-type AChE and all mutants showed substrate activation at low pH. At high pH, there was substrate inhibition for wild-type AChE and for the mutant with tryptophan in the π-cation subsite, but substrate activation for mutants containing small residues, glycine or alanine. This is particularly apparent in the B. fasciatus AChE. Thus a single amino acid substitution in the π-cation site, from the aromatic tyrosine of B. fasciatus AChE to the alanine of BuChE, caused AChE to behave like BuChE. Excess substrate binds to the peripheral anionic site (PAS) of AChE. The finding that AChE is activated by excess substrate supports the idea that binding of a second substrate molecule to the PAS induces a conformational change that reorganizes the active site.
机译:底物抑制被认为是乙酰胆碱酯酶(AChE)的定义特性,而底物激活是丁酰胆碱酯酶(BuChE)的特征。为了解底物抑制的机理,研究了AChE水解乙酰硫胆碱对pH的依赖性,其pH值为5至8。野生型人AChE及其突变体Y337G和Y337W,以及野生型筋膜长臂猿AChE及其突变体Y333G,研究了Y333A和Y333W。 pH曲线结果出乎意料。代替底物抑制,野生型AChE和所有突变体均在低pH下显示底物活化。在高pH下,野生型AChE具有底物抑制作用,所有突变体在低pH下均显示底物激活。在高pH下,野生型AChE和π阳离子亚位点具有色氨酸的突变体均具有底物抑制作用,而含有小残基,甘氨酸或丙氨酸的突变体则具有底物活化作用。这在fasciatus的AChE中尤为明显。因此,从fasciatus fasciatus的芳香酪氨酸到BuChE的丙氨酸,π阳离子位点上的单个氨基酸取代导致AChE的行为像BuChE。过量的底物与AChE的外围阴离子位点(PAS)结合。 AChE被过量的底物激活的发现支持了第二种底物分子与PAS的结合诱导构象变化的想法,该构象变化重新组织了活性位点。

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