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Effect of alkyl hydroxybenzenes on the properties of dioxygenases

机译:烷基羟苯对双加氧酶性质的影响

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The aim of the present work was to investigate the influence of alkylhydroxybenzenes (AHBs) and tyrosol, which belong to cell differentiation factors d 1 group of autoregulators on properties of biodegradation enzymes, catechol 1,2-dioxygenase (Cat 1,2-DO) and methylcatechol 1,2-dioxygenase (MCat 1,2-DO) of Rhodococcus opacus 6a. AHBs were found to have a greater effect on MCat 1,2-DO than on Cat 1,2-DO. It was expressed by more pronounced changes in the activity of MCat 1,2-DO with unsubstituted catechol at different AHB concentrations and by increasing thermostability of MCat 1,2-DO compared to Cat 1,2-DO under the protective action of AHBs. The compound C7-AHB shifted the maximum of dioxygenase activities towards higher temperatures and increased their operation optimum. AHBs changed the specificity constant of dioxygenases by decreasing/increasing the K m/V max value. For example, the increase in the V max value of 3,6-dichlorocatechol oxidation by Cat 1,2-DO in the presence of C7-AHB was 300-fold higher compared to the same reaction without AHB. The influence of cell differentiation factors on the properties of dimeric enzymes has been shown for the first time. It gives an idea of how the specificity of enzymes can be changed in vivo when strains contact new substrates. The work has shown the possibility of modification of the properties of dimeric enzymes towards the extension of enzyme activity with difficulty converted substrates or in more extreme conditions, which may be important for biotechnological processes.
机译:本工作的目的是研究属于自动调节因子 1 组细胞分化因子的烷基羟苯(AHBs)和酪醇对生物降解酶儿茶酚1,2-二加氧酶(猫Rhodococcus opacus 6a的Cat 1,2-DO)和甲基邻苯二酚1,2-dioxygenase(MCat 1,2-DO)。发现AHBs对MCat 1,2-DO的影响大于对Cat 1,2-DO的影响。在不同的AHB浓度下,MCat 1,2-DO与未取代的邻苯二酚的活性发生了更明显的变化,与Aats的保护作用相比,与Cat 1,2-DO相比,MCat 1,2-DO的热稳定性提高了。化合物C 7 -AHB将最大的双加氧酶活性移向更高的温度,并提高了其最佳操作性能。 AHBs通过降低/增加K m / V max 值来改变双加氧酶的特异性常数。例如,在存在C 7 -AHB的情况下,Cat 1,2-DO对3,6-二氯邻苯二酚氧化的V max 值增加300倍与没有AHB的相同反应相比更高。首次显示了细胞分化因子对二聚酶性质的影响。它给出了当菌株接触新底物时如何在体内改变酶特异性的想法。这项工作表明,在难以转化的底物条件下或在更极端的条件下,可能会改变二聚酶的特性,以扩展酶的活性,这对生物技术过程可能是重要的。

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