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聚合物激活酶中的协同性与酶活性。一种一维背驮式结合模型及其在DNA拓扑异构酶的DNA依赖性ATP酶中的应用。

Co-operativity and enzymatic activity in polymer-activated enzymes. A one-dimensional piggy-back binding model and its application to the DNA-dependent ATPase of DNA gyrase.

作者信息

Chen Y, Maxwell A, Westerhoff H V

出版信息

J Mol Biol. 1986 Jul 20;190(2):201-14. doi: 10.1016/0022-2836(86)90293-7.

Abstract

The binding of a ligand to a one-dimensional lattice in the presence of a second ("rider") ligand, which binds only to the first ligand (piggy-back binding), is studied. A model derived from this study is used to analyze the effects of co-operativity on the reaction rates of enzymes activated by polymeric cofactors that provide multiple binding sites for the enzyme. It is found that in the presence of strong co-operativity, the steady-state reaction rates of polymer-activated enzymes can be very different from the Michaelis-Menten paradigm. By adjusting the co-operativity parameters and the binding constants of the ligands, the model can generate apparent auto-catalytic enhancement by substrates at low substrate concentrations and apparent substrate inhibition at high substrate concentrations. The model is shown to be able to explain the differences in the rates of ATP hydrolysis by DNA gyrase in the presence of long versus short DNA molecules and in the presence of long DNA molecules at different gyrase to DNA ratios.

摘要

研究了在第二种(“搭便车”)配体存在下,配体与一维晶格的结合情况,该第二种配体仅与第一种配体结合(背驮式结合)。从该研究中得出的一个模型用于分析协同性对由为酶提供多个结合位点的聚合辅因子激活的酶的反应速率的影响。结果发现,在存在强协同性的情况下,聚合物激活酶的稳态反应速率可能与米氏范式有很大不同。通过调整配体的协同性参数和结合常数,该模型可以在低底物浓度下产生底物的表观自催化增强作用,而在高底物浓度下产生表观底物抑制作用。该模型能够解释在存在长与短DNA分子时以及在不同的促旋酶与DNA比例下存在长DNA分子时,DNA促旋酶水解ATP速率的差异。

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