Immobilization as a Strategy for Improving Enzyme Properties-Application to Oxidoreductases

被引:419
作者
Guzik, Urszula [1 ]
Hupert-Kocurek, Katarzyna [1 ]
Wojcieszynska, Danuta [1 ]
机构
[1] Univ Silesia Katowice, Fac Biol & Environm Protect, Dept Biochem, PL-40032 Katowice, Poland
关键词
oxidoreductases; immobilization; stability of enzyme; HORSERADISH-PEROXIDASE IMMOBILIZATION; WALLED CARBON NANOTUBES; PSEUDOMONAS-PUTIDA MT-2; WASTE-WATER; CATECHOL 1,2-DIOXYGENASE; HYDROGEN-PEROXIDE; PHENOLIC-COMPOUNDS; NANOFIBROUS MEMBRANE; AQUEOUS-SOLUTION; CATALYTIC CYCLE;
D O I
10.3390/molecules19078995
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
The main objective of the immobilization of enzymes is to enhance the economics of biocatalytic processes. Immobilization allows one to re-use the enzyme for an extended period of time and enables easier separation of the catalyst from the product. Additionally, immobilization improves many properties of enzymes such as performance in organic solvents, pH tolerance, heat stability or the functional stability. Increasing the structural rigidity of the protein and stabilization of multimeric enzymes which prevents dissociation-related inactivation. In the last decade, several papers about immobilization methods have been published. In our work, we present a relation between the influence of immobilization on the improvement of the properties of selected oxidoreductases and their commercial value. We also present our view on the role that different immobilization methods play in the reduction of enzyme inhibition during biotechnological processes.
引用
收藏
页码:8995 / 9018
页数:24
相关论文
共 99 条
  • [21] Catalytic properties of catechol 1,2-dioxygenase from Acinetobacter radioresistens S13 immobilized on nanosponges
    Di Nardo, Giovanna
    Roggero, Carlo
    Campolongo, Simona
    Valetti, Francesca
    Trotta, Francesco
    Gilardi, Gianfranco
    [J]. DALTON TRANSACTIONS, 2009, (33) : 6507 - 6512
  • [22] Immobilization of tyrosinase on chitosan-clay composite beads
    Dincer, Ayse
    Becerik, Seda
    Aydemir, Tulin
    [J]. INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2012, 50 (03) : 815 - 820
  • [23] Applications of laccases and tyrosinases (phenoloxidases) immobilized on different supports:: a review
    Durán, N
    Rosa, MA
    D'Annibale, A
    Gianfreda, L
    [J]. ENZYME AND MICROBIAL TECHNOLOGY, 2002, 31 (07) : 907 - 931
  • [24] Duran N., 2008, APPL CATAL B-ENVIRON, V28, P83
  • [25] Erdem A., 2000, TURK J MED SCI, V30, P349
  • [26] Recent developments and applications of immobilized laccase
    Fernandez-Fernandez, Maria
    Angeles Sanroman, M.
    Moldes, Diego
    [J]. BIOTECHNOLOGY ADVANCES, 2013, 31 (08) : 1808 - 1825
  • [27] Immobilization of functionally unstable catechol-2,3-dioxygenase greatly improves operational stability
    Fernandez-Lafuente, R
    Guisan, JM
    Ali, S
    Cowan, D
    [J]. ENZYME AND MICROBIAL TECHNOLOGY, 2000, 26 (08) : 568 - 573
  • [28] Stabilization of multimeric enzymes: Strategies to prevent subunit dissociation
    Fernandez-Lafuente, Roberto
    [J]. ENZYME AND MICROBIAL TECHNOLOGY, 2009, 45 (6-7) : 405 - 418
  • [29] Potential of Different Enzyme Immobilization Strategies to Improve Enzyme Performance
    Garcia-Galan, Cristina
    Berenguer-Murcia, Angel
    Fernandez-Lafuente, Roberto
    Rodrigues, Rafael C.
    [J]. ADVANCED SYNTHESIS & CATALYSIS, 2011, 353 (16) : 2885 - 2904
  • [30] Gholami-Borujeni F, 2011, RES J CHEM ENVIRON, V15, P217