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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Stereoselective Formation of beta-O-4 Structures Mimicking Softwood Lignin Biosynthesis: Effects of Solvent and the Structures of Quinone Methide Lignin Models
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Stereoselective Formation of beta-O-4 Structures Mimicking Softwood Lignin Biosynthesis: Effects of Solvent and the Structures of Quinone Methide Lignin Models

机译:β-O-4结构的立体选择性形成模仿软木木质素生物合成:溶剂的作用和醌甲基木质素模型的结构

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摘要

p-Quinone methide (QM) is formed as an intermediate during lignin biosynthesis. The aromatization of the QM by the attack of a nucleophile at the a-position of its side chain generates a phenolic hydroxy group in a growing polymer and creates stereoisomeric forms in the side chain. A series of beta-O-4-aryl ether QMs was reacted with water at 25 degrees C to replicate the formation of p-hydro)ryphenyl (H) and guaiacyl (C) beta-O-4 structures in plant cell walls. Water addition occurred in 3-methoxy-substituted QMs (G-type QMs) with half-lives (t(1/2)) between 13 and 15 min, at pH 7, in 50% water solution (dioxane water, 1:1). The rate increased as the water concentration increased to 99% (t(1/2), 1.2-1.4 min). Similar solvent effects were observed for more reactive nonsubstituted QMs (H-type QMs with t(1/2) of <1 min). Consequently, t(1/2) of the H-type QMs was shorter than that of the G-type QMs under every solvent condition. Upon increasing the water concentration, the variation in the erythro/threo ratios of the four dimeric beta-O-4 products increased. Interestingly, the effect of pH on the stereopreference, which was observed in 50% water solution, was small and became imperceptible as the water concentration increased to 99%, suggesting that the effect of the solvent, as well as the effect of the pH, plays an important role in understanding the reaction conditions in cell walls during lignin biosynthesis. The threo isomer was preferentially formed in the four dimeric beta-O-4 structures, which is inconsistent with the structural features of compression wood lignin rich in H-units. However, the erythro-selective formation was attained in an H-type QM at every pH studied (pH 3.5-7) by introducing a biphenyl structure into the beta-etherified ring moiety.
机译:P-醌甲基(QM)形成为木质素生物合成期间的中间体。通过在其侧链的A-位置处的亲核官能官能官能团的QM芳族化产生在生长聚合物中的酚羟基,并在侧链中产生立体异构形式。一系列的β-O-4-芳基醚QMS与水在25℃下反应来复制对 - 氢)ryphenyl(H)和愈创木基(C)的β-O-4结构的植物细胞壁的形成。在3-甲氧基 - 取代的QMS(G型QMS)中发生水,在13至15分钟的半衰期(T(1/2)),在pH7,在50%水溶液(二恶烷水,1:1) )。随着水浓度增加至99%(T(1/2),1.2-1.4分钟)的速率增加。对于更多反应性的非反应性QM(H型QMS,具有<1分钟的T(1/2)的H型QMS,观察到类似的溶剂效应。因此,H型QMS的T(1/2)短于每种溶剂条件下的G型QMS的T(1/2)。在增加水浓度后,四个二聚体β-O-4产物的红细胞/三种比率的变化增加。有趣的是,pH在50%水溶液中观察到的静态引用的pH值小,并且由于水浓度增加至99%,而且表明溶剂的影响以及pH的效果,以及pH的效果,以及pH值,在木质素生物合成期间了解细胞壁中的反应条件来发挥重要作用。 Threo异构体优先形成在四个二聚体β-O-4结构中,这与富含H-Ins的压缩木质木质素的结构特征不一致。然而,通过将联苯结构引入β醚化环部分,在研究(pH3.5-7)的每个pH下以H型QM达到红细胞选择性形成。

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