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首页> 外文期刊>Biomacromolecules >Molecular Size Characterization and Kinetics Studies on Hydrolysis of Pullulan by Pullulanase In an Entangled Alginate Medium
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Molecular Size Characterization and Kinetics Studies on Hydrolysis of Pullulan by Pullulanase In an Entangled Alginate Medium

机译:纠缠藻酸盐介质中支链淀粉酶水解支链淀粉的分子大小表征及动力学研究

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摘要

The behavior of a hydrolytic enzyme (pullulanase) toward its substrate (pullulan) in the presence of a nonsubstrate, (alginate), both below and above the critical entanglement concentration (C~*), was studied. The hydrolysis kinetics were studied with the enzyme and alginate concentrations varied using two main methods: a colorimetric assay of the reducing extremities (RE), which allowed the number-average molar masses (M_n) of the oligosaccharides to be determined, and size exclusion chromatography with on-line, multiangle light scattering, viscometer, and differential refractive index detectors, which allowed the average molar masses, M_n and M_w, of the oligosaccharides during hydrolysis to be determined. Free pullulanase acts via an "endo" process. The presence of alginate slows the hydrolysis kinetics, particularly when the alginate concentration is greater than the C~*. These results were confirmed by the evolution of the kinetic parameters (K_M, V_(max)) obtained via isothermal titration calorimetry (ITC). The amount of oligosaccharides produced is not dependent on the alginate concentration, and the endo enzyme behavior is not modified by the entanglement in the medium. These observations were also confirmed by ITC analysis in the presence of degraded alginate (without entanglement). Our resists correlated with the substrate diffusion in entangled media. The pullulanase reaction in the presence of alginate is shown to be diffusion-dependent.
机译:研究了在临界纠缠浓度(C *)之下和之上的非底物(藻酸盐)存在下,水解酶(pullulanase)对其底物(pullulan)的行为。使用两种主要方法研究了酶和藻酸盐浓度变化的水解动力学:还原末端的比色测定(RE),可确定寡糖的数均摩尔质量(M_n);尺寸排阻色谱法通过在线,多角度光散射,粘度计和示差折光检测器,可以确定水解过程中寡糖的平均摩尔质量M_n和M_w。游离的支链淀粉酶通过“内切”过程起作用。藻酸盐的存在减慢了水解动力学,特别是当藻酸盐浓度大于C *时。这些结果被通过等温滴定量热法(ITC)获得的动力学参数(K_M,V_(max))的演变所证实。产生的寡糖的量不取决于藻酸盐的浓度,并且内酶的行为不受介质中纠缠的影响。在存在降解藻酸盐(无纠缠)的情况下,ITC分析也证实了这些观察结果。我们的抗蚀剂与基材在纠缠介质中的扩散相关。在藻酸盐存在下的支链淀粉酶反应显示为扩散依赖性的。

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