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土曲霉产生的一种果胶酶的固定化研究。

Immobilization studies of a pectinase produced by Aspergillus terreus.

作者信息

Vaz Raissa Pieroni, Vici Ana Claudia, Teixeira de Moraes Polizeli Maria de Lourdes, Magalhães Pérola Oliveira, Filho Edivaldo Ximenes Ferreira

机构信息

Laboratory of Enzymology, Department of Cellular Biology, University of Brasília, Brasília, DF, Brazil.

Department of Biology, Faculty of Philosophy, Sciences and Letters of Ribeirão Preto, University of São Paulo, Ribeirão Preto, SP, Brazil.

出版信息

Biotechnol Appl Biochem. 2021 Feb;68(1):197-208. doi: 10.1002/bab.2004. Epub 2020 Aug 21.

DOI:10.1002/bab.2004
PMID:32770865
Abstract

Aspergillus terreus can produce different holocellulose-degrading enzymes when grown in sugarcane bagasse, with predominant pectinase activity. Thus, pectinase was selected for purification and immobilization studies. Ion exchange and molecular exclusion chromatography studies were performed, after which it was possible to semipurify the enzyme with a yield of 80%. The crude extract pectinase (PECEB) and the partially purified enzyme (PEC2) were immobilized on monoamino-N-aminoethyl (MANAE)-agarose with pectinase activity yields of 66% and 98%, respectively. After immobilization in MANAE-agarose, the pectinase showed higher activity at acidic pH (pH 4.0) when compared to the nonimmobilized enzyme. It was also found that after the immobilization process, there was a threefold improvement in the enzyme's thermostability. Also, it was possible to reuse the immobilized enzyme for up to five cycles of hydrolysis with effective production of reducing sugars (0.196 mg/g of substrate). The industrial application test revealed a significant decrease in the viscosity of guava juice when the immobilized enzyme was used. PECEB, immobilized on MANAE-agarose, was the enzyme sample that generated the highest pulp viscosity reduction (approximately 47%). Although additional studies are needed for practical industrial application, the results obtained herein reveal the potential of application of immobilized pectinase in the industry.

摘要

土曲霉在甘蔗渣中生长时可产生不同的全纤维素降解酶,其中果胶酶活性占主导。因此,选择果胶酶进行纯化和固定化研究。进行了离子交换和分子排阻色谱研究,之后能够以80%的产率对该酶进行半纯化。将粗提果胶酶(PECEB)和部分纯化的酶(PEC2)固定在单氨基-N-氨乙基(MANAE)-琼脂糖上,果胶酶活性产率分别为66%和98%。固定在MANAE-琼脂糖上后,与未固定化的酶相比,果胶酶在酸性pH(pH 4.0)下表现出更高的活性。还发现,固定化过程后,该酶的热稳定性提高了三倍。此外,固定化酶可重复使用多达五个水解循环,并有效产生还原糖(0.196 mg/g底物)。工业应用测试表明,使用固定化酶时番石榴汁的粘度显著降低。固定在MANAE-琼脂糖上的PECEB是使果肉粘度降低最高(约47%)的酶样品。尽管实际工业应用还需要进一步研究,但本文获得的结果揭示了固定化果胶酶在工业中的应用潜力。

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