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Towards understanding of laccase-catalysed oxidative oligomerisation of dimeric lignin model compounds

机译:理解漆酶催化的二聚木质素模型化合物的氧化低聚

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Laccase-catalysed oligomerisation of dimeric β-O-4 linked lignin model compounds was studied in detail to understand the oligomerisation process by monitoring the reaction progress using high performance liquid chromatography (HPLC) and mass spectroscopy (MS). The initial oxidation intermediates of oligomerisation were isolated for the first time and characterised by spectroscopic methods sucessfully. The experimental observations indicated that C5–C5′ biphenyl linkages, one of the most thermodynamically stable linkages present in the native lignin, are formed exclusively during the early stage of the oligomerisation process. The experimental observations were supported by density functional theory (DFT) calculations of relative free energies of possible products. The C5–C5′ biphenyl tetramer is the thermodynamically more favoured product compared to the C5–O–C4′ product by a free energy difference of 10.0 kcal mol?1 in water. Among the various linking possibilities for further formation of hexamers, the thermodynamically more stable product with a similar C–C linkage is proposed as a plausible structure based on the mass of the hexamer isolated and DFT calculations. The current study demonstrates that laccase catalyzes the oligomerisation more preferentially than oxidative bond cleavage in β-O-4 linkages and that product formation is likely controlled by the thermodynamic stability of the resultant oligomers.
机译:详细研究了漆酶催化的二聚β-O-4连接的木质素模型化合物的低聚反应,以通过使用高效液相色谱(HPLC)和质谱(MS)监测反应进程来了解低聚反应过程。首次分离出低聚反应的初始氧化中间体,并通过光谱方法对其进行了成功表征。实验观察表明,C 5 –C 5′ 联苯键是目前热力学最稳定的键之一天然木质素中的“α-淀粉”仅在低聚过程的早期形成。实验观察得到了可能产物相对自由能的密度泛函理论(DFT)计算的支持。与C 相比,C 5 –C 5′ 联苯四聚体是热力学上更受青睐的产物。 5 –OC–C 4′ 乘积的自由能差为10.0 kcal mol ?1 在水中。在进一步形成六聚体的各种连接可能性中,基于分离出的六聚体的质量和DFT计算,提出了具有相似C–C键的热力学更稳定的产物,作为合理的结构。当前的研究表明,漆酶比β-O-4键中的氧化键裂解更优先催化低聚,并且产物的形成很可能受所得低聚物的热力学稳定性控制。

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