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首页> 外文期刊>Applied and Environmental Microbiology >The ligninolytic system of the white rot fungus Pycnoporus cinnabarinus: purification and characterization of the laccase.
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The ligninolytic system of the white rot fungus Pycnoporus cinnabarinus: purification and characterization of the laccase.

机译:白腐真菌Pycnoporus cinnabarinus的木质素分解系统:漆酶的纯化和鉴定。

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The white rot fungus Pycnoporus cinnabarinus was characterized with respect to its set of extracellular phenoloxidases. Laccase was produced as the predominant extracellular phenoloxidase in conjunction with low amounts of an unusual peroxidase. Neither lignin peroxidase nor manganese peroxidase was detected. Laccase was produced constitutively during primary metabolism. Addition of the most effective inducer, 2,5-xylidine, enhanced laccase production ninefold without altering the isoenzyme pattern of the enzyme. Laccase purified to apparent homogeneity was a single polypeptide having a molecular mass of approximately 81,000 Da, as determined by calibrated gel filtration chromatography, and a carbohydrate content of 9%. The enzyme displayed an unusual behavior on isoelectric focusing gels; the activity was split into one major band (pI, 3.7) and several minor bands of decreasing intensity which appeared at regular, closely spaced intervals toward the alkaline end of the gel. Repeated electrophoresis of the major band under identical conditions produced the same pattern, suggesting that the laccase was secreted as a single acidic isoform with a pI of about 3.7 and that the multiband pattern was an artifact produced by electrophoresis. This appeared to be confirmed by N-terminal amino acid sequencing of the purified enzyme, which yielded a single sequence for the first 21 residues. Spectroscopic analysis indicated a typical laccase active site in the P. cinnabarinus enzyme since all three typical Cu(II)-type centers were identified. Substrate specificity and inhibitor studies also indicated the enzyme to be a typical fungal laccase. The N-terminal amino acid sequence of the P. cinnabarinus laccase showed close homology to the N-terminal sequences determined for laccases from Trametes versicolor, Coriolus hirsutus, and an unidentified basidiomycete, PM1. The principal features of the P. cinnabarinus enzyme system, a single predominant laccase and a lack of lignin- or manganese-type peroxidase, make this organism an interesting model for further studies of possible alternative pathways of lignin degradation by white rot fungi.
机译:白腐真菌Pycnoporus cinnabarinus的特征在于其细胞外酚氧化酶的集合。漆酶作为主要的细胞外酚氧化酶与少量的异常过氧化物酶一起产生。没有检测到木质素过氧化物酶和锰过氧化物酶。漆酶是在初次代谢过程中组成性产生的。最有效的诱导剂2,5-二甲基吡啶的加入将漆酶的产量提高了九倍,而没有改变酶的同工酶模式。纯化至表观同质的漆酶是分子量为约81,000 Da的单一多肽,通过校准的凝胶过滤色谱法测定,碳水化合物含量为9%。该酶在等电聚焦凝胶上显示出异常的行为。活性被分为一个主带(pI,3.7)和几个强度递减的小带,它们以规则,紧密的间隔朝着凝胶的碱性末端出现。在相同条件下对主要谱带进行重复电泳会产生相同的图谱,这表明漆酶以单酸性异构体的形式分泌,pI约为3.7,而多谱带图谱是电泳产生的假象。纯化的酶的N端氨基酸测序似乎证实了这一点,该酶对前21个残基产生了一个序列。光谱分析表明,由于鉴定了所有三个典型的Cu(II)型中心,因此在朱砂体育中具有典型的漆酶活性位点。底物特异性和抑制剂研究也表明该酶是典型的真菌漆酶。朱砂杆菌漆酶的N端氨基酸序列与从Trametes versicolor,Coriolus hirsutus和未鉴定的担子菌PM1的漆酶N端序列显示出高度同源性。朱砂巴氏杆菌酶系统的主要特征,单一的主要漆酶和缺乏木质素或锰型过氧化物酶,使该生物成为有趣的模型,用于进一步研究白腐真菌降解木质素的可能替代途径。

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