Sarkanen S, Razal R A, Piccariello T, Yamamoto E, Lewis N G
Department of Wood Science, Virginia Polytechnic Institute and State University, Blacksburg 24061.
J Biol Chem. 1991 Feb 25;266(6):3636-43.
The extracellular lignin peroxidase from the white-rot basidiomycete Phanerochaete chrysosporium is thought to play an important role in lignin biodegradation. However, the majority of lignin-derived preparations actually experience overall polymerization at the hands of the enzyme in vitro. It has now been found that, in the presence of H2O2 at pH 4.0, the monomeric lignin precursor coniferyl alcohol is polymerized quantitatively by a lignin peroxidase preparation which is uncontaminated with MnII-dependent peroxidases. 13C NMR spectrometry of the resulting dehydropolymerisates from 13C-labeled monolignols confirms that the frequencies of different interunit linkages are very similar to those engendered through the action of horseradish peroxidase with H2O2. Indeed, lignin peroxidase does not ultimately seem to be a prerequisite for lignin degradation in vivo, yet its activity can still accelerate the conversion of lignin-derived preparations by P. chrysosporium to CO2. Consequently, lignin peroxidase can provisionally be expected to fulfill two important functions. On the one hand, the enzyme may detoxify lower molecular weight phenolic compounds released from lignins during their fungal decomposition. On the other hand, through the introduction of suitable functional groups, lignin peroxidase could indirectly enhance the susceptibility of macromolecular lignin structures toward depolymerization by another enzyme.
白腐担子菌黄孢原毛平革菌产生的细胞外木质素过氧化物酶被认为在木质素生物降解中起重要作用。然而,大多数木质素衍生制剂实际上在体外会在该酶的作用下发生整体聚合。现已发现,在pH 4.0且存在H2O2的情况下,单体木质素前体松柏醇会被一种未被依赖锰的过氧化物酶污染的木质素过氧化物酶制剂定量聚合。对由13C标记的单木质醇生成的脱氢聚合物进行13C核磁共振光谱分析证实,不同单元间连接的频率与辣根过氧化物酶与H2O2作用产生的频率非常相似。事实上,木质素过氧化物酶最终似乎并非体内木质素降解的必要条件,但其活性仍可加速黄孢原毛平革菌将木质素衍生制剂转化为二氧化碳的过程。因此,暂时可以预期木质素过氧化物酶能履行两项重要功能。一方面,该酶可能使木质素在真菌分解过程中释放的低分子量酚类化合物解毒。另一方面,通过引入合适的官能团,木质素过氧化物酶可以间接增强大分子木质素结构对另一种酶解聚的敏感性。