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由于与腐殖质超结构的主体-客体相互作用,碱性磷酸酶的活性降低。

Reduced activity of alkaline phosphatase due to host-guest interactions with humic superstructures.

机构信息

Centro Interdipartimentale per la Risonanza Magnetica Nucleare (CERMANU), Università di Napoli Federico II, Via Università 100, 80055 Portici, Italy.

出版信息

Chemosphere. 2013 Nov;93(9):1972-9. doi: 10.1016/j.chemosphere.2013.07.015. Epub 2013 Aug 13.

Abstract

Nuclear Magnetic Resonance (NMR) spectroscopy was applied to directly study the interactions between the alkaline phosphatase enzyme (AP) and two different humic acids from a volcanic soil (HA-V) and a Lignite deposit (HA-L). Addition of humic matter to enzyme solutions caused signals broadening in (1)H-NMR spectra, and progressive decrease and increase of enzyme relaxation (T1 and T2) and correlation (τC) times, respectively. Spectroscopic changes were explained with formation of ever larger weakly-bound humic-enzyme complexes, whose translational and rotational motion was increasingly restricted. NMR diffusion experiments also showed that the AP diffusive properties were progressively reduced with formation of large humic-enzyme complexes. The more hydrophobic HA-L affected spectral changes more than the more hydrophilic HA-V. (1)H-NMR spectra also showed the effect of progressively greater humic-enzyme complexes on the hydrolysis of an enzyme substrate, the 4-nitrophenyl phosphate disodium salt hexahydrate (p-NPP). While AP catalysis concomitantly decreased NMR signals of p-NPP and increased those of nitrophenol, addition of humic matter progressively and significantly slowed down the rate of change for these signals. In agreement with the observed spectral changes, the AP catalytic activity was more largely inhibited by HA-L than by HA-V. Contrary to previous studies, in which humic-enzyme interactions were only indirectly assumed from changes in spectrophotometric behavior of enzyme substrates, the direct measurements of AP behavior by NMR spectroscopy indicated that humic materials formed weakly-bound host-guest complexes with alkaline phosphatase, and the enzyme catalytic activity was thereby significantly inhibited. These results suggest that the role of extracellular enzymes in soils may be considerably reduced when they come in contact with organic matter dissolved in the soil solution.

摘要

核磁共振(NMR)光谱法被应用于直接研究碱性磷酸酶(AP)与两种不同腐殖酸(火山土壤来源的腐殖酸(HA-V)和褐煤来源的腐殖酸(HA-L))之间的相互作用。向酶溶液中添加腐殖质会导致(1)H-NMR 谱信号增宽,并分别导致酶弛豫(T1 和 T2)和相关(τC)时间逐渐减少和增加。光谱变化可以通过形成越来越大的弱结合的腐殖质-酶复合物来解释,这些复合物的平移和旋转运动受到越来越大的限制。NMR 扩散实验还表明,随着大的腐殖质-酶复合物的形成,AP 的扩散性质逐渐降低。疏水性更强的 HA-L 比亲水性更强的 HA-V 对光谱变化的影响更大。(1)H-NMR 谱还显示了腐殖质-酶复合物对酶底物 4-硝基苯磷酸二钠盐六水合物(p-NPP)水解的影响逐渐增大。虽然 AP 催化作用同时降低了 p-NPP 的 NMR 信号并增加了硝基苯酚的信号,但添加腐殖质会逐渐显著降低这些信号变化的速率。与观察到的光谱变化一致,HA-L 比 HA-V 更显著地抑制了 AP 的催化活性。与先前的研究不同,先前的研究仅从酶底物分光光度行为的变化来间接假设腐殖质-酶相互作用,而通过 NMR 光谱直接测量 AP 行为表明,腐殖质物质与碱性磷酸酶形成弱结合的主客体复合物,从而显著抑制了酶的催化活性。这些结果表明,当土壤中溶解的有机质与细胞外酶接触时,土壤中细胞外酶的作用可能会大大降低。

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