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Soybean hull peroxidase immobilization on macroporous glycidyl methacrylates with different surface characteristics

Authorized Users Only
2014
Authors
Prokopijević, Miloš
Prodanović, Olivera
Spasojević, Dragica
Stojanović, Zeljko P
Radotić, Ksenija
Prodanović, Radivoje
Article (Published version)
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Abstract
Soybean hull peroxidase (SHP, E.C. 1.11.1.7) was immobilized by a glutaraldehyde and periodate method onto series of macroporous copolymers of glycidyl methacrylate (GMA) and ethylene glycol dimethacrylate (EGDMA), poly(GMA-co-EGDMA) with various surface characteristics and pore size diameters ranging from 44 to 200 nm. Glutaraldehyde immobilization method and poly(GMA-co-EGDMA) named SGE 20/12 with pore sizes of 120 nm gave immobilized enzyme with highest specific activity of 25 U/g. Deactivation studies showed that immobilization increased stability of SHP and that surface characteristics of the used copolymer had a major influence on a stability of immobilized enzyme at high temperatures and in an organic solvent. The highest thermostability was obtained using the copolymer SGE 20/12 with pore size of 120 nm, while the highest stability in dioxane had SHP immobilized onto copolymer SGE 10/4 with pore size of 44 nm. Immobilized SHP showed a wider pH optimum as compared to the native ...enzyme especially at alkaline pH values and 3.2 times increased K (m) value for pyrogallol. After 6 cycles of repeated use in batch reactor, immobilized SHP retained 25 % of its original activity. Macroporous copolymers with different surface characteristics can be used for fine tuning of activity and stability of immobilized SHP to obtain a biocatalyst suitable for phenol oxidation or polymer synthesis in organic solvents.

Keywords:
Stability / Periodate / Immobilized enzyme / Glutaraldehyde / Copolymer
Source:
Bioprocess and Biosystems Engineering, 2014, 37, 5, 799-804
Publisher:
  • Springer, New York
Funding / projects:
  • Study of structure-function relationships in the plant cell wall and modifications of the wall structure by enzyme engineering (RS-173017)
  • Allergens, antibodies, enzymes and small physiologically important molecules: design, structure, function and relevance (RS-172049)

DOI: 10.1007/s00449-013-1050-z

ISSN: 1615-7591

PubMed: 24061564

WoS: 000334932300005

Scopus: 2-s2.0-84905649784
[ Google Scholar ]
15
13
URI
http://rimsi.imsi.bg.ac.rs/handle/123456789/754
Collections
  • Radovi istraživača / Researchers’ publications
Institution/Community
Institut za multidisciplinarna istraživanja
TY  - JOUR
AU  - Prokopijević, Miloš
AU  - Prodanović, Olivera
AU  - Spasojević, Dragica
AU  - Stojanović, Zeljko P
AU  - Radotić, Ksenija
AU  - Prodanović, Radivoje
PY  - 2014
UR  - http://rimsi.imsi.bg.ac.rs/handle/123456789/754
AB  - Soybean hull peroxidase (SHP, E.C. 1.11.1.7) was immobilized by a glutaraldehyde and periodate method onto series of macroporous copolymers of glycidyl methacrylate (GMA) and ethylene glycol dimethacrylate (EGDMA), poly(GMA-co-EGDMA) with various surface characteristics and pore size diameters ranging from 44 to 200 nm. Glutaraldehyde immobilization method and poly(GMA-co-EGDMA) named SGE 20/12 with pore sizes of 120 nm gave immobilized enzyme with highest specific activity of 25 U/g. Deactivation studies showed that immobilization increased stability of SHP and that surface characteristics of the used copolymer had a major influence on a stability of immobilized enzyme at high temperatures and in an organic solvent. The highest thermostability was obtained using the copolymer SGE 20/12 with pore size of 120 nm, while the highest stability in dioxane had SHP immobilized onto copolymer SGE 10/4 with pore size of 44 nm. Immobilized SHP showed a wider pH optimum as compared to the native enzyme especially at alkaline pH values and 3.2 times increased K (m) value for pyrogallol. After 6 cycles of repeated use in batch reactor, immobilized SHP retained 25 % of its original activity. Macroporous copolymers with different surface characteristics can be used for fine tuning of activity and stability of immobilized SHP to obtain a biocatalyst suitable for phenol oxidation or polymer synthesis in organic solvents.
PB  - Springer, New York
T2  - Bioprocess and Biosystems Engineering
T1  - Soybean hull peroxidase immobilization on macroporous glycidyl methacrylates with different surface characteristics
EP  - 804
IS  - 5
SP  - 799
VL  - 37
DO  - 10.1007/s00449-013-1050-z
ER  - 
@article{
author = "Prokopijević, Miloš and Prodanović, Olivera and Spasojević, Dragica and Stojanović, Zeljko P and Radotić, Ksenija and Prodanović, Radivoje",
year = "2014",
abstract = "Soybean hull peroxidase (SHP, E.C. 1.11.1.7) was immobilized by a glutaraldehyde and periodate method onto series of macroporous copolymers of glycidyl methacrylate (GMA) and ethylene glycol dimethacrylate (EGDMA), poly(GMA-co-EGDMA) with various surface characteristics and pore size diameters ranging from 44 to 200 nm. Glutaraldehyde immobilization method and poly(GMA-co-EGDMA) named SGE 20/12 with pore sizes of 120 nm gave immobilized enzyme with highest specific activity of 25 U/g. Deactivation studies showed that immobilization increased stability of SHP and that surface characteristics of the used copolymer had a major influence on a stability of immobilized enzyme at high temperatures and in an organic solvent. The highest thermostability was obtained using the copolymer SGE 20/12 with pore size of 120 nm, while the highest stability in dioxane had SHP immobilized onto copolymer SGE 10/4 with pore size of 44 nm. Immobilized SHP showed a wider pH optimum as compared to the native enzyme especially at alkaline pH values and 3.2 times increased K (m) value for pyrogallol. After 6 cycles of repeated use in batch reactor, immobilized SHP retained 25 % of its original activity. Macroporous copolymers with different surface characteristics can be used for fine tuning of activity and stability of immobilized SHP to obtain a biocatalyst suitable for phenol oxidation or polymer synthesis in organic solvents.",
publisher = "Springer, New York",
journal = "Bioprocess and Biosystems Engineering",
title = "Soybean hull peroxidase immobilization on macroporous glycidyl methacrylates with different surface characteristics",
pages = "804-799",
number = "5",
volume = "37",
doi = "10.1007/s00449-013-1050-z"
}
Prokopijević, M., Prodanović, O., Spasojević, D., Stojanović, Z. P., Radotić, K.,& Prodanović, R.. (2014). Soybean hull peroxidase immobilization on macroporous glycidyl methacrylates with different surface characteristics. in Bioprocess and Biosystems Engineering
Springer, New York., 37(5), 799-804.
https://doi.org/10.1007/s00449-013-1050-z
Prokopijević M, Prodanović O, Spasojević D, Stojanović ZP, Radotić K, Prodanović R. Soybean hull peroxidase immobilization on macroporous glycidyl methacrylates with different surface characteristics. in Bioprocess and Biosystems Engineering. 2014;37(5):799-804.
doi:10.1007/s00449-013-1050-z .
Prokopijević, Miloš, Prodanović, Olivera, Spasojević, Dragica, Stojanović, Zeljko P, Radotić, Ksenija, Prodanović, Radivoje, "Soybean hull peroxidase immobilization on macroporous glycidyl methacrylates with different surface characteristics" in Bioprocess and Biosystems Engineering, 37, no. 5 (2014):799-804,
https://doi.org/10.1007/s00449-013-1050-z . .

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