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Effect of lignin degradation product sinapyl alcohol on laccase catalysis during lignin degradation

机译:木质素降解产物SINAPEL醇对木质素降解期间漆酶催化的影响

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摘要

Lignin is an excellent source of biomass; enzymatic hydrolysis of lignin is the key to its efficient use. The degradation activity of ligninase is affected by binding reactions with degradation products of lignin. In this paper, sinapyl alcohol (SA), a product of lignin degradation by laccase (LAC, a ligninase), was investigated as a mediator in enzymatic hydrolysis of lignin. This reaction was evaluated by molecular modelling, spectroscopic, dynamic light scattering, electrochemical experiments, gas chromatograph-mass spectrometer (GC-MS), nuclear magnetic resonance (NMR) and high-performance liquid chromatography (HPLC). These approaches allow elucidation of conformational changes in LAC caused by SA binding; confirm spontaneous binding between SA and LAC and electron transfer; determine the binding mode of SA with LAC; and enable determination of the mechanism of participation of the phenolic mediator SA in oxidation reactions after identification of 2,6-dimethoxy-1,4-benzoquinone (DMQ); besides, the effects of initial concentration of SA on the yields of DMQ; Our study shows how a small molecule mediator binds to LAC to form highly active intermediates, offering important insight into the processes involved in degradation of biomass.
机译:木质素是一种优秀的生物质来源;木质素的酶水解是其有效利用的关键。 LigninAse的降解活性受到木质素的降解产物的结合反应的影响。本文研究了SINAPEL醇(SA),通过漆酶(LAC,LIGNIN酶)的木质素降解产物作为木质素的酶水解中的介质。通过分子建模,光谱,动态光散射,电化学实验,气相色谱 - 质谱仪(GC-MS),核磁共振(NMR)和高效液相色谱(HPLC)评价该反应。这些方法允许阐明由SA绑定引起的LAC的构象变化;确认SA和LAC和电子转移之间的自发结合;用LAC确定SA的绑定模式;并能够在鉴定2,6-二甲氧基-1,4-苯醌(DMQ)后测定酚类介质SA参与氧化反应中的氧化反应的机制;此外,SA初始浓度对DMQ产量的影响;我们的研究表明,小分子介体如何与LAC结合以形成高活性的中间体,这提供了对参与生物质降解的过程的重要洞察。

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