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Extracellular Enzyme Activities during Lignocellulose Degradation by Streptomyces spp.: A Comparative Study of Wild-Type and Genetically Manipulated Strains

机译:链霉菌降解木质纤维素过程中的细胞外酶活性:野生型和遗传操纵菌株的比较研究。

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摘要

The wild-type ligninolytic actinomycete Streptomyces viridosporus T7A and two genetically manipulated strains with enhanced abilities to produce a water-soluble lignin degradation intermediate, an acid-precipitable polymeric lignin (APPL), were grown on lignocellulose in solid-state fermentation cultures. Culture filtrates were periodically collected, analyzed for APPL, and assayed for extracellular lignocellulose-catabolizing enzyme activities. Isoenzymes were analyzed by polyacrylamide gel electrophoresis and activity staining on the gels. Two APPL-overproducing strains, UV irradiation mutant T7A-81 and protoplast fusion recombinant SR-10, had higher and longer persisting peroxidase, esterase, and endoglucanase activities than did the wild-type strain T7A. Results implicated one or more of these enzymes in lignin solubilization. Only mutant T7A-81 had higher xylanase activity than the wild type. The peroxidase was induced by both lignocellulose and APPL. This extracellular enzyme has some similarities to previously described ligninases in fungi. This is the first report of such an enzyme in Streptomyces spp. Four peroxidase isozymes were present, and all catalyzed the oxidation of 3,4-dihydroxyphenylalanine, while one also catalyzed hydrogen peroxide-dependent oxidation of homoprotocatechuic acid and caffeic acid. Three constitutive esterase isozymes were produced which differed in substrate specificity toward α-naphthyl acetate and α-naphthyl butyrate. Three endoglucanase bands, which also exhibited a low level of xylanase activity, were identified on polyacrylamide gels as was one xylanase-specific band. There were no major differences in the isoenzymes produced by the different strains. The probable role of each enzyme in lignocellulose degradation is discussed.
机译:野生型木质素放线菌丝状链霉菌T7A和两个具有增强的能力以生产水溶性木质素降解中间产物(酸可沉淀的聚合木质素(APPL))的基因操作菌株在固态发酵培养物中的木质纤维素上生长。定期收集培养滤液,分析APPL,并分析细胞外木质纤维素分解酶的活性。通过聚丙烯酰胺凝胶电泳和凝胶上的活性染色分析同工酶。与野生型菌株T7A相比,两个过度生产APPL的菌株UV辐射突变体T7A-81和原生质体融合重组SR-10具有更高和更长的持久性过氧化物酶,酯酶和内切葡聚糖酶活性。结果表明这些酶中的一种或多种与木质素增溶有关。仅突变体T7A-81具有比野生型更高的木聚糖酶活性。过氧化物酶被木质纤维素和APPL诱导。这种细胞外酶与先前描述的真菌中的木质素酶有一些相似之处。这是链霉菌中这种酶的首次报道。存在四种过氧化物酶同工酶,并且全部催化3,4-二羟基苯基丙氨酸的氧化,而一种还催化过氧化氢依赖性的高原儿茶酸和咖啡酸的氧化。产生了三种组成性酯酶同工酶,它们对乙酸α-萘酯和丁酸α-萘酯的底物特异性不同。在聚丙烯酰胺凝胶上鉴定到三个内切葡聚糖酶带,它们也表现出低水平的木聚糖酶活性,如同一个木聚糖酶特异性带一样。不同菌株产生的同工酶没有重大差异。讨论了每种酶在木质纤维素降解中的可能作用。

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