首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Time-resolved fluorescence of tryptophans in yeast hexokinase-PI: effect of subunit dimerization and ligand binding
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Time-resolved fluorescence of tryptophans in yeast hexokinase-PI: effect of subunit dimerization and ligand binding

机译:酵母己糖激酶-PI中色氨酸的时间分辨荧光:亚基二聚化和配体结合的影响

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Time-resolved and steady-state fluorescence measurements have been performed on monomeric and dimeric forms of yeast hexokinase-PI. Observation of similar emission spectra and fluorescence decay parameters for both the forms of the enzyme suggests that tryptophan residue(s) are not likely to be present at the subunit-subunit interface and the process of dimerization does not perturb the local environment of tryptophan(s). The fluorescence decay of tryptophans in enzyme could be fitted to a bi-exponential function with two lifetime components, tau(1) similar to 2.2 ns and tau(2) similar to 3.9 ns. Binding of glucose, which is known to convert the 'open' conformation of the enzyme to a 'closed' active conformation, results in similar to 30% reduction in emission intensity and a selective decrease in tau(1) from similar to 2.2 to similar to 1.1 ns. These effects can be reversed by the addition of trehalose 6-phosphate tan inhibitor of yeast hexokinase), suggesting that the trehalose 6-phosphate inhibits the enzyme by binding to its 'open' inactive conformation rather than competing with glucose to bind to the 'closed' active conformation. Binding of nucleotide ligands (ATP, ADP and adenyl-(beta,gamma-methylene)-diphosphate (AMPPCP)) to the monomeric or dimeric form of enzyme quenched the steady-state fluorescence by similar to 4-8%, but had no measurable effect on the distribution of lifetimes or on their magnitudes. Addition of nucleotides to the enzyme-glucose complex also did not produce any further change in fluorescence decay parameters. These results indicate that it is highly unlikely that the formation of a ternary enzyme-glucose-nucleotide complex from the binary enzyme-glucose complex is accompanied by a large conformational change in the enzyme, as has been surmised in some earlier studies. (C) 2000 Elsevier Science S.A. All rights reserved. [References: 38]
机译:已对酵母己糖激酶-PI的单体和二聚体形式进行了时间分辨和稳态荧光测量。两种酶形式的相似发射光谱和荧光衰减参数的观察结果表明,色氨酸残基不太可能出现在亚基-亚基界面上,二聚化过程不会干扰色氨酸的局部环境)。酶中色氨酸的荧光衰减可以与具有两个寿命分量的tau(1)类似于2.2 ns和tau(2)类似于3.9 ns拟合为双指数函数。葡萄糖的结合已知可以将酶的“开放”构象转化为“封闭”活性构象,从而导致发射强度降低约30%,选择性降低tau(1),从相似值2.2降低到相似值至1.1 ns。这些作用可以通过添加酵母己糖激酶的海藻糖6-磷酸tan抑制剂来逆转,这表明海藻糖6-磷酸通过结合其“开放”无活性构象而不是与葡萄糖竞争与“封闭”结合而抑制酶。主动构象。核苷酸配体(ATP,ADP和腺苷-(β,γ-亚甲基)-二磷酸(AMPPCP))与酶的单体或二聚体形式的结合使稳态荧光猝灭了约4-8%,但无法测量影响寿命的分布或其幅度。向酶-葡萄糖复合物中添加核苷酸也不会在荧光衰减参数上产生任何进一步的变化。这些结果表明,由二元酶-葡萄糖复合物形成三元酶-葡萄糖-核苷酸复合物的可能性极小,如一些较早的研究所推测的那样。 (C)2000 Elsevier Science S.A.保留所有权利。 [参考:38]

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