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Isoenzyme characterization of proteases and amylases and partial purification of proteases from filamentous fungi causing biodeterioration of industrial paper

机译:蛋白酶和淀粉酶的同工酶表征以及从丝状真菌中部分纯化蛋白酶导致工业纸张的生物降解

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摘要

Biodeterioration is an undesirable process that can affect cultural heritage and economically important materials, Although several biotic and abiotic conditions can accelerate this process, microorganisms are perhaps its main promoters. Fungi are the most important microbial agents of biodeterioration of industrial paper stored in archives. The high genetic plasticity of these organisms allows them to adapt to different environments, using almost any class of materials as substrate. Fungi produce a wide array of enzymes, including cellulases, amylases, and proteases, which are responsible for their gross biodeterioration activity. Thirty-two morphotypes of filamentous fungi were isolated on different media from industrial paper at an advanced stage of biodeterioration. The isolates showed different degrees of cellulolytic, proteolytic, and amylolytic activities on plate assays. The highest proteolytic and amylolytic activities were selected for isoform characterization, which provided an indication of the biochemical diversity that allowed them to colonize these materials. Eladia sacculum was the morphotype selected for partial purification of basic proteases since it has three basic isoforms, simplifying the purification process. We obtained a protein of 35 kDa with a pl of 8.9. Crown Copyright (C) 2008 Published by Elsevier Ltd. All rights reserved.
机译:生物恶化是一个不受欢迎的过程,可能会影响文化遗产和经济上重要的物质。尽管一些生物和非生物条件可以加速这一过程,但微生物可能是其主要推动者。真菌是储存在档案中的工业用纸生物降解的最重要微生物。这些生物的高遗传可塑性使它们几乎可以使用任何种类的材料作为底物来适应不同的环境。真菌产生各种各样的酶,包括纤维素酶,淀粉酶和蛋白酶,这些酶负责其总体生物降解活性。在生物降解的晚期,从工业用纸上的不同培养基中分离出32种形态的丝状真菌。分离物在平板测定中显示出不同程度的纤维素分解,蛋白水解和淀粉分解活性。选择了最高的蛋白水解和淀粉分解活性用于同工型表征,这提供了使它们能够定殖于这些物质的生化多样性的指示。葡萄球菌(Eladia sacculum)是选择用于部分纯化碱性蛋白酶的形态型,因为它具有三种基本同工型,从而简化了纯化过程。我们获得了35 kDa的蛋白质,pI为8.9。 Crown版权所有(C)2008,由Elsevier Ltd.发行。保留所有权利。

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