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Effect of arsenate contamination on free, immobilized and soil alkaline phosphatases: activity, kinetics and thermodynamics

机译:砷酸酯污染对自由,固定化和土壤碱性磷酸酶的影响:活性,动力学和热力学

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摘要

Soil alkaline phosphatase plays a vital role in phosphorus cycling in the soil ecosystem. Arsenic, an ecotoxic element, affects the normal function of phosphatase in the soil environment. To understand the effects of arsenic on phosphatase, the activity, kinetic and thermodynamic characteristics were investigated systematically following the addition of arsenate to free soluble, clay-immobilized alkaline phosphatase (ALP) and soil ALP. The results showed that the ALP activity was strongly inhibited by arsenate. The Michaelis constant K-m increased linearly with increasing arsenate concentration, indicating a decrease in affinity of the enzyme for the substrate. The inhibition constant K-i increased after the ALP was immobilized on montmorillonite and goethite. Thermodynamic properties such as activation energy, activation enthalpy, Gibbs activation free energy and activation entropy increased when arsenate was added, which suggests that more energy is required to form the activated molecule and the enzyme-substrate complex. The reaction was less spontaneous and the enzyme-substrate complex was less ordered. Immobilization of the ALP on minerals reduced the variation in kinetic and thermodynamic properties in the presence of arsenate, indicating that immobilization provided protection from arsenate stress. Arsenate toxicity to soil ALP was affected markedly by soil texture. The results suggest that the type of arsenate inhibition on free soluble ALP was competitive inhibition, whereas for immobilized and soil ALPs, the inhibition was competitive or mixed inhibition depending on the mineral or soil property.
机译:土壤碱性磷酸酶在土壤生态系统中循环中起着至关重要的作用。砷,一种生态毒性元素,影响土壤环境中磷酶的正常功能。为了了解砷对磷酸酶的影响,通过向游离可溶性,粘土固定化碱性磷酸酶(ALP)和土壤ALP加入砷酸盐,系统地研究活性,动力学和热力学特性。结果表明,砷酸盐强烈抑制ALP活性。 Michaelis常数K-M随着增加的砷酸盐浓度线性而增加,表明酶对基材的亲和力降低。在将AlP固定在蒙脱土和甲石上,抑制常数K-I增加。当加入砷酸酯时,热力学性质如活化能量,活化焓,GIBBS活化自由能和活化熵增加,这表明需要更多的能量来形成活化分子和酶 - 底物络合物。反应较小,酶 - 底物络合物较少排序。在矿物质上固定ALP在砷酸盐存在下降低了动力学和热力学性质的变化,表明固定化提供了来自砷酸盐胁迫的保护。土壤土壤的砷毒性毒性明显受土壤质地的影响。结果表明,无溶解ALP对砷化物抑制的类型具有竞争性抑制,而对于固定化和土壤阿尔卑斯山,抑制因矿物质或土壤性质而具有竞争性或混合抑制。

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