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首页> 外文期刊>Journal of molecular catalysis, B. Enzymatic >Experimental and theoretical affinity studies of substituted phenols to chlorocatechol 1,2-dioxygenases: A step toward the comprehension of inhibitor/substrate binding to intradiol dioxygenases
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Experimental and theoretical affinity studies of substituted phenols to chlorocatechol 1,2-dioxygenases: A step toward the comprehension of inhibitor/substrate binding to intradiol dioxygenases

机译:实验和理论上的取代酚对氯邻苯二酚1,2-双加氧酶的亲和力研究:迈向理解抑制剂/底物与二醇内双加氧酶的结合的一步

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摘要

The inhibition kinetics of 4- and 3-chlorocatechol 1,2-dioxygenases from Rhodococcus opacus 1CP were investigated using 14 different substituted phenols. The obtained experimental data were analyzed against experimental (pK_a) and theoretical reactivity parameters of the phenols calculated by semi-empirical AMI method (DPE, E_(homo), charge on oxygen atom of the reactive hydroxyl group, van der Waals surface areas and partial charges of substituents on aromatic ring). From these comparisons it appears that the main factor determining the inhibitors binding in the active center of these enzymes is the deprotonation ability of their reactive hydroxyl group. The analysis also allowed to detect, in 3-CCD, enzyme factors influencing on the interactions with the investigated phenols. Some correlations between the calculated van der Waals surface areas as well as the partial charges of substituents on the aromatic ring of the phenols and their inhibition effect on the enzymes were found.
机译:使用14种不同的取代酚研究了不透明红球菌1CP的4-和3-氯邻苯二酚1,2-二加氧酶的抑制动力学。将获得的实验数据与实验(pK_a)进行了比较,并通过半经验AMI方法计算了苯酚的理论反应性参数(DPE,E_(homo),反应性羟基的氧原子上的电荷,范德华表面积和部分芳环上取代基的电荷)。从这些比较看来,决定抑制剂在这些酶的活性中心结合的主要因素是其反应性羟基的去质子能力。该分析还允许在3-CCD中检测影响与所研究的酚相互作用的酶因子。发现所计算的范德华表面积与酚芳环上取代基的部分电荷及其对酶的抑制作用之间存在一些相关性。

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