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Inhibition of Zea mays coniferyl aldehyde dehydrogenase by daidzin: A potential approach for the investigation of lignocellulose recalcitrance

机译:大豆苷抑制玉米a叶松柏醛脱氢酶:研究木质纤维素难降解性的潜在方法

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摘要

Coniferyl aldehyde dehydrogenase (CALDH) catalyzes the oxidation of coniferyl aldehyde to ferulic acid. Because ferulic acid has a relevant role in the structure and recalcitrance of the cell wall, inhibition of CALDH can reduce its levels and increase the digestibility of lignocellulosic biomass. We prospected in silico a selective inhibitor of CALDH of Zea mays. The ZmaysCALDH gene was identified by homology with the corresponding gene of Arabidopsis thaliana. The sequence was translated and analyzed, and the quaternary structure was modeled. A set of 20 putative inhibitors were screened from a virtual library and docked in the active site of ZmaysCALDH, and daidzin (DZN) was selected as an enzyme inhibitor. The stability of the ZmaysCALDH-DZN complex was evaluated by molecular dynamics simulations of the monomeric and tetrameric forms. For evaluation of kinetic analysis, ZmaysCALDH activity was determined in vitro by high-performance liquid chromatography. In comparison to the DZN-free control, the data obtained indicated constant V-max and enhanced K-m. Altogether, in silico and in vitro findings indicated that DZN inhibited ZmaysCALDH competitively. The DZN-induced inhibition of ZmaysCALDH could be a valuable and promising approach to studies on ferulic acid biosynthesis and saccharification of lignocellulosic biomass.
机译:松柏醛脱氢酶(CALDH)催化松柏醛氧化为阿魏酸。由于阿魏酸在细胞壁的结构和顽固性中具有重要作用,因此抑制CALDH可以降低其水平并提高木质纤维素生物质的消化率。我们在计算机上预测了玉米丝CALDH的选择性抑制剂。通过与拟南芥相应基因的同源性鉴定了ZmaysCALDH基因。对序列进行翻译和分析,并对四元结构建模。从虚拟文库中筛选出一组20种推定的抑制剂,并将其停靠在ZmaysCALDH的活性位点,并选择大豆苷(DZN)作为酶抑制剂。 ZmaysCALDH-DZN配合物的稳定性通过单体和四聚体形式的分子动力学模拟进行评估。为了评估动力学分析,通过高效液相色谱法在体外测定ZmaysCALDH活性。与不含DZN的对照相比,获得的数据显示恒定的V-max和增强的K-m。总之,计算机和体外研究表明,DZN竞争性抑制ZmaysCALDH。 DZN诱导的ZmaysCALDH抑制可能是研究阿魏酸生物合成和木质纤维素生物质糖化的有价值和有前途的方法。

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