Glutaraldehyde modification of lipases immobilized on octyl agarose beads: Roles of the support enzyme loading and chemical amination of the enzyme on the final enzyme features

被引:24
作者
Abellanas-Perez, Pedro [1 ]
Carballares, Diego [1 ]
Fernandez-Lafuente, Roberto [1 ]
Rocha-Martin, Javier [2 ]
机构
[1] ICP CSIC, Dept Biocatalisis, Campus UAM CSIC, Madrid 28049, Spain
[2] Univ Complutense Madrid, Fac Biol Sci, Dept Biochem & Mol Biol, Madrid 28040, Spain
关键词
Inter and intramolecular enzyme crosslinking; Enzyme stabilization; Effect of enzyme loading; Effect of the inactivating buffer on enzyme; stability; MULTIPOINT COVALENT ATTACHMENT; SITE-DIRECTED MUTAGENESIS; INTERFACIAL ACTIVATION; CANDIDA-ANTARCTICA; HUMICOLA-LANUGINOSA; IMPROVED STABILITY; CROSS-LINKING; STABILIZATION; IMPROVE; BIOCATALYSIS;
D O I
10.1016/j.ijbiomac.2023.125853
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Lipase B from Candida antarctica (CALB) and lipase from Thermomyces lanuginosus (TLL) have been immobilized on octyl agarose at low loading and at a loading exceeding the maximum support capacity. Then, the enzymes have been treated with glutaraldehyde and inactivated at pH 7.0 in Tris-HCl, sodium phosphate and HEPES, giving different stabilities. Stabilization (depending on the buffer) of the highly loaded biocatalysts was found, very likely as a consequence of the detected intermolecular crosslinkings. This did not occur for the lowly loaded biocatalysts. Next, the enzymes were chemically aminated and then treated with glutaraldehyde. In the case of TLL, the intramolecular crosslinkings (visible by the apparent reduction of the protein size) increased enzyme stability of the lowly loaded biocatalysts, an effect that was further increased for the highly loaded biocatalysts due to intermolecular crosslinkings. Using CALB, the intramolecular crosslinkings were less intense, and the stabilization was lower, even though the intermolecular crosslinkings were quite intense for the highly loaded biocatalyst. The stabilization detected depended on the inactivation buffer. The interactions between enzyme loading and inactivating buffer on the effects of the chemical modifications suggest that the modification and inactivation studies must be performed under the target biocatalysts and conditions.
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页数:12
相关论文
共 133 条
[1]  
Abellanas P., Biotechnol. Progress
[2]  
Abellanas-Perez P., Process biochem
[3]  
Abellanas-Perez P., Enzyme and Microbial Technology
[4]   Biocatalysis: A Pharma Perspective [J].
Adams, Joseph P. ;
Brown, Murray J. B. ;
Diaz-Rodriguez, Alba ;
Lloyd, Richard C. ;
Roiban, Gheorghe-Doru .
ADVANCED SYNTHESIS & CATALYSIS, 2019, 361 (11) :2421-2432
[5]   Biocatalysis as Key to Sustainable Industrial Chemistry [J].
Alcantara, Andres R. ;
Dominguez de Maria, Pablo ;
Littlechild, Jennifer A. ;
Schurmann, Martin ;
Sheldon, Roger A. ;
Wohlgemuth, Roland .
CHEMSUSCHEM, 2022, 15 (09) :e202102709
[6]   Metagenomics: Is it a powerful tool to obtain lipases for application in biocatalysis? [J].
Almeida, Janaina Marques ;
Alnoch, Robson Carlos ;
Souza, Emanuel Maltempi ;
Mitchell, David Alexander ;
Krieger, Nadia .
BIOCHIMICA ET BIOPHYSICA ACTA-PROTEINS AND PROTEOMICS, 2020, 1868 (02)
[7]   One biocatalyst - Many applications: The use of Candida antarctica B-lipase in organic synthesis [J].
Anderson, EM ;
Karin, M ;
Kirk, O .
BIOCATALYSIS AND BIOTRANSFORMATION, 1998, 16 (03) :181-204
[8]   Use of polyethylenimine to produce immobilized lipase multilayers biocatalysts with very high volumetric activity using octyl-agarose beads: Avoiding enzyme release during multilayer production [J].
Arana-Pena, Sara ;
Rios, Nathalia S. ;
Mendez-Sanchez, Carmen ;
Lokha, Yuliya ;
Goncalves, Luciana R. B. ;
Fernandez-Lafuente, Roberto .
ENZYME AND MICROBIAL TECHNOLOGY, 2020, 137
[9]   Effects of Enzyme Loading and Immobilization Conditions on the Catalytic Features of Lipase From Pseudomonas fluorescens Immobilized on Octyl-Agarose Beads [J].
Arana-Pena, Sara ;
Rios, Nathalia S. ;
Carballares, Diego ;
Mendez-Sanchez, Carmen ;
Lokha, Yuliya ;
Goncalves, Luciana R. B. ;
Fernandez-Lafuente, Roberto .
FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2020, 8
[10]   Chemical amination of Rhizopus oryzae lipase for multipoint covalent immobilization on epoxy-functionalized supports: Modulation of stability and selectivity [J].
Ashjari, Maryam ;
Mohammadi, Mehdi ;
Badri, Rashid .
JOURNAL OF MOLECULAR CATALYSIS B-ENZYMATIC, 2015, 115 :128-134