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拟南芥中的假定阳离子细胞壁结合过氧化物酶同源物 AtPrx2、AtPrx25 和 AtPrx71 参与木质素的形成。

Putative cationic cell-wall-bound peroxidase homologues in Arabidopsis, AtPrx2, AtPrx25, and AtPrx71, are involved in lignification.

机构信息

Department of Forest and Forest Products Sciences, Kyushu University , 6-10-1 Hakozaki, Higashi-ku, Fukuoka, 812-8581 Japan.

出版信息

J Agric Food Chem. 2013 Apr 24;61(16):3781-8. doi: 10.1021/jf400426g. Epub 2013 Apr 15.

Abstract

The final step of lignin biosynthesis, which is catalyzed by a plant peroxidase, is the oxidative coupling of the monolignols to growing lignin polymers. Cationic cell-wall-bound peroxidase (CWPO-C) from poplar callus is a unique enzyme that has oxidative activity for both monolignols and synthetic lignin polymers. This study shows that putative CWPO-C homologues in Arabidopsis , AtPrx2, AtPrx25, and AtPrx71, are involved in lignin biosynthesis. Analysis of stem tissue using the acetyl bromide method and derivatization followed by the reductive cleavage method revealed a significant decrease in the total lignin content of ATPRX2 and ATPRX25 deficient mutants and altered lignin structures in ATPRX2, ATPRX25, and ATPRX71 deficient mutants. Among Arabidopsis peroxidases, AtPrx2 and AtPrx25 conserve a tyrosine residue on the protein surface, and this tyrosine may act as a substrate oxidation site as in the case of CWPO-C. AtPrx71 has the highest amino acid identity with CWPO-C. The results suggest a role for CWPO-C and CWPO-C-like peroxidases in the lignification of vascular plant cell walls.

摘要

木质素生物合成的最后一步是由植物过氧化物酶催化的,是将单体酚氧化偶联到生长中的木质素聚合物上。来自杨树愈伤组织的阳离子细胞壁结合过氧化物酶 (CWPO-C) 是一种独特的酶,对单体酚和合成木质素聚合物都具有氧化活性。本研究表明,拟南芥中的假定 CWPO-C 同源物 AtPrx2、AtPrx25 和 AtPrx71 参与木质素生物合成。使用乙酰溴法和衍生化后还原裂解法分析茎组织表明,ATPRX2 和 ATPRX25 缺陷突变体的总木质素含量显著降低,ATPRX2、ATPRX25 和 ATPRX71 缺陷突变体的木质素结构发生改变。在拟南芥过氧化物酶中,AtPrx2 和 AtPrx25 在蛋白质表面保守一个酪氨酸残基,这个酪氨酸可能像 CWPO-C 一样作为底物氧化位点。AtPrx71 与 CWPO-C 的氨基酸同一性最高。结果表明 CWPO-C 和 CWPO-C 样过氧化物酶在维管植物细胞壁的木质化中起作用。

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