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Response surface methodology: Synthesis of short chain fructooligosaccharides with a fructosyltransferase from Aspergillus aculeatus
被引:48
作者:
Nemukula, A.
[1
]
Mutanda, T.
[1
]
Wilhelmi, B. S.
[1
]
Whiteley, C. G.
[1
]
机构:
[1] Rhodes Univ, Dept Biochem Microbiol & Biotechnol, ZA-6140 Grahamstown, South Africa
关键词:
Transferase;
Synthesis;
Fructooligosaccharides;
Response surface;
BETA-FRUCTOFURANOSIDASE;
ENZYME-SYSTEM;
OPTIMIZATION;
INULIN;
HYDROLYSIS;
D O I:
10.1016/j.biortech.2008.10.022
中图分类号:
S2 [农业工程];
学科分类号:
0828 ;
摘要:
A transferase was isolated, purified and characterised from Aspergillus aculeatus. The enzyme exhibited a pH and temperature optima of 6.0 and 60 degrees C, respectively and under such conditions remained stable with no decrease in activity after 5 h. The enzyme was purified 7.1 fold with a yield of 22.3% and specific activity of 486.1 U mg(-1) after dialysis. concentration with polyethyleneglycol (30%) and DEAE-Sephacel chromatography. It was monomeric with a molecular mass of 85 kDa and K-m and V-max values of 272.3 mM and 166.7 pmol min(-1) ml(-1). The influence of pH, temperature, reaction time, and enzyme and sucrose concentration on the formation of short-chain fructooligosaccharides (FOS) was examined by statistical response surface methodology (RSM). The enzyme showed both transfructosylation and hydrolytic activity with the transfructosylation ratio increasing to 88% at a sucrose concentration of 600 mg ml(-1). Sucrose concentration (400 mg ml(-1)) temperature (60 C), and pH (5.6) favoured the synthesis of high levels of GF(3) and GF(4). Incubation time had a critical effect on the yield of FOS as the major products were GF(2) after 4 h and GF4 after 8 h. A prolonged incubation of 16 h resulted in the conversion of GF(4) into GF(2) as a result of self hydrolase activity. (c) 2008 Elsevier Ltd. All rights reserved.
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页码:2040 / 2045
页数:6
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