首页> 美国卫生研究院文献>Applied and Environmental Microbiology >Activities of Secreted Aryl Alcohol Quinone Oxidoreductases from Pycnoporus cinnabarinus Provide Insights into Fungal Degradation of Plant Biomass
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Activities of Secreted Aryl Alcohol Quinone Oxidoreductases from Pycnoporus cinnabarinus Provide Insights into Fungal Degradation of Plant Biomass

机译:朱砂比杆螺(Pycnoporus cinnabarinus)分泌的芳醇醌醌氧化还原酶的活性为植物生物量的真菌降解提供了见识。

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摘要

Auxiliary activities family 3 subfamily 2 (AA3_2) from the CAZy database comprises various functions related to ligninolytic enzymes, such as fungal aryl alcohol oxidases (AAO) and glucose oxidases, both of which are flavoenzymes. The recent study of the Pycnoporus cinnabarinus CIRM BRFM 137 genome combined with its secretome revealed that four AA3_2 enzymes are secreted during biomass degradation. One of these AA3_2 enzymes, scf184803.g17, has recently been produced heterologously in Aspergillus niger. Based on the enzyme's activity and specificity, it was assigned to the glucose dehydrogenases (P. cinnabarinus GDH [PcGDH]). Here, we analyze the distribution of the other three AA3_2 enzymes (scf185002.g8, scf184611.g7, and scf184746.g13) to assess their putative functions. These proteins showed the highest homology with aryl alcohol oxidase from Pleurotus eryngii. Biochemical characterization demonstrated that they were also flavoenzymes harboring flavin adenine dinucleotide (FAD) as a cofactor and able to oxidize a wide variety of phenolic and nonphenolic aryl alcohols and one aliphatic polyunsaturated primary alcohol. Though presenting homology with fungal AAOs, these enzymes exhibited greater efficiency in reducing electron acceptors (quinones and one artificial acceptor) than molecular oxygen and so were defined as aryl-alcohol:quinone oxidoreductases (AAQOs) with two enzymes possessing residual oxidase activity (PcAAQO2 and PcAAQO3). Structural comparison of PcAAQO homology models with P. eryngii AAO demonstrated a wider substrate access channel connecting the active-site cavity to the solvent, explaining the absence of activity with molecular oxygen. Finally, the ability of PcAAQOs to reduce radical intermediates generated by laccase from P. cinnabarinus was demonstrated, shedding light on the ligninolytic system of this fungus.
机译:来自CAZy数据库的辅助活性家族3亚家族2(AA3_2)包含与木质素分解酶有关的各种功能,例如真菌芳基醇氧化酶(AAO)和葡萄糖氧化酶,它们都是黄素酶。最近对朱砂比目鱼CIRM BRFM 137基因组及其分泌基因组的研究表明,在生物量降解过程中会分泌四种AA3_2酶。这些AA3_2酶之一scf184803.g17最近在黑曲霉中异源产生。根据酶的活性和特异性,将其分配给葡萄糖脱氢酶(P. cinnabarinus GDH [PcGDH])。在这里,我们分析了其他三种AA3_2酶(scf185002.g8,scf184611.g7和scf184746.g13)的分布,以评估其推定功能。这些蛋白质与来自杏鲍菇的芳醇氧化酶具有最高的同源性。生化特征表明,它们也是含有黄素腺嘌呤二核苷酸(FAD)作为辅因子的黄素酶,能够氧化多种酚和非酚芳基醇以及一种脂族多不饱和伯醇。尽管与真菌AAO具有同源性,但这些酶在还原电子受体(醌和一个人工受体)方面比分子氧具有更高的效率,因此被定义为芳基醇:醌氧化还原酶(AAQO),其中两种酶具有残留的氧化酶活性(PcAAQO2和PcAAQO3)。 PcAAQO同源性模型与杏鲍氏假单胞菌AAO的结构比较表明,较宽的底物进入通道将活性位点腔与溶剂连接起来,从而说明了分子氧缺乏活性。最后,证明了PcAAQOs减少了由朱砂杆菌漆酶产生的自由基中间体的能力,这为这种真菌的木质素分解系统提供了亮光。

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