Christensen J H, Bauw G, Welinder K G, Van Montagu M, Boerjan W
Laboratorium voor Genetica, Departement Genetica, Vlaams Interuniversitair Instituut voor Biotechnologie, Universiteit Gent, K.L. Ledeganckstraat 35, B-9000 Gent, Belgium.
Plant Physiol. 1998 Sep;118(1):125-35. doi: 10.1104/pp.118.1.125.
Lignin is an integral cell wall component of all vascular plants. Peroxidases are widely believed to catalyze the last enzymatic step in the biosynthesis of lignin, the dehydrogenation of the p-coumaryl alcohols. As the first stage in identifying lignin-specific peroxidase isoenzymes, the classical anionic peroxidases found in the xylem of poplar (Populus trichocarpa Trichobel) were purified and characterized. Five different poplar xylem peroxidases (PXP 1, PXP 2, PXP 3-4, PXP 5, and PXP 6) were isolated. All five peroxidases were strongly glycosylated (3.6% to 4.9% N-glucosamine), with apparent molecular masses between 46 and 54 kD and pI values between pH 3.1 and 3.8. Two of the five isolated peroxidases (PXP 3-4 and PXP 5) could oxidize the lignin monomer analog syringaldazine, an activity previously correlated with lignification in poplar. Because these isoenzymes were specifically or preferentially expressed in xylem, PXP 3-4 and PXP 5 are suggested to be involved in lignin polymerization.
木质素是所有维管植物细胞壁的一个组成部分。人们普遍认为过氧化物酶催化木质素生物合成的最后一个酶促步骤,即对香豆醇的脱氢反应。作为鉴定木质素特异性过氧化物酶同工酶的第一步,对杨树(毛果杨)木质部中发现的经典阴离子过氧化物酶进行了纯化和表征。分离出了五种不同的杨树木质部过氧化物酶(PXP 1、PXP 2、PXP 3 - 4、PXP 5和PXP 6)。所有这五种过氧化物酶都高度糖基化(3.6%至4.9%的N - 葡糖胺),表观分子量在46至54 kD之间,pI值在pH 3.1至3.8之间。分离出的五种过氧化物酶中的两种(PXP 3 - 4和PXP 5)能够氧化木质素单体类似物丁香醛连氮,这种活性先前与杨树的木质化相关。由于这些同工酶在木质部中特异性或优先表达,因此推测PXP 3 - 4和PXP 5参与木质素聚合。