Méchin Valérie, Baumberger Stéphanie, Pollet Brigitte, Lapierre Catherine
UMR 206 Chimie Biologique, INRA/INA PG, F-78850 Thiverval Grignon, France.
Phytochemistry. 2007 Feb;68(4):571-9. doi: 10.1016/j.phytochem.2006.11.024. Epub 2006 Dec 21.
The objective of this study was to assess the influence of the peroxidase/coniferyl alcohol (CA) ratio on the dehydrogenation polymer (DHP) synthesis. The soluble and unsoluble fractions of horseradish peroxidase (HRP)-catalyzed CA dehydrogenation mixtures were recovered in various proportions, depending on the polymerization mode (Zutropf ZT/Zulauf ZL) and HRP/CA ratio (1.6-1100purpurogallin U mmol(-1)). The ZL mode yielded 0-57%/initial CA of unsoluble condensed DHPs (thioacidolysis yields <200micromolg(-1)) with a proportion of uncondensed CA end groups increasing with the HRP/CA ratio (7.2-55.5%/total uncondensed CA). Systematically lower polymer yields (0-49%/initial CA) were obtained for the ZT mode. In that mode, a negative correlation was established between the beta-O-4 content (thioacidolysis yields: 222-660micromolg(-1)) and the HRP/CA ratio. In both modes, decreasing the HRP/CA ratio below 18Ummol(-1) favoured an end-wise polymerization process evidenced by the occurrence of tri-, tetra- and pentamers involving at least one beta-O-4 bond. At low ratio, the unsoluble ZT DHP was found to better approximate natural lignins than DHPs previously synthesized with traditional methods. Besides its possible implication in lignin biosynthesis, peroxidase activity is a crucial parameter accounting for the structural variations of in vitro DHPs.
本研究的目的是评估过氧化物酶/松柏醇(CA)比例对脱氢聚合物(DHP)合成的影响。辣根过氧化物酶(HRP)催化的CA脱氢混合物的可溶和不溶部分以不同比例回收,这取决于聚合模式(滴加法ZT/流加法ZL)和HRP/CA比例(1.6 - 1100紫尿酸酶单位mmol⁻¹)。ZL模式产生0 - 57%/初始CA的不溶性缩合DHP(硫代酸解产率<200微摩尔g⁻¹),未缩合的CA端基比例随HRP/CA比例增加(7.2 - 55.5%/总未缩合CA)。对于ZT模式,系统地获得了较低的聚合物产率(0 - 49%/初始CA)。在该模式下,β - O - 4含量(硫代酸解产率:222 - 660微摩尔g⁻¹)与HRP/CA比例之间建立了负相关。在两种模式下,将HRP/CA比例降低至18单位mmol⁻¹以下有利于端基聚合过程,这由涉及至少一个β - O - 4键的三聚体、四聚体和五聚体的出现所证明。在低比例下,发现不溶性ZT DHP比以前用传统方法合成的DHP更接近天然木质素。除了其在木质素生物合成中的可能作用外,过氧化物酶活性是解释体外DHP结构变化的关键参数。