Kinetics of sucrose conversion to fructo-oligosaccharides using enzyme (invertase) under free condition.
Deepa C Khandekar, Tapas Palai, Aman Agarwal, Prashant K Bhattacharya
Index: Bioprocess Biosyst. Eng. 37(12) , 2529-37, (2014)
Full Text: HTML
Abstract
The study reports the synthesis of fructo-oligosaccharide (FOS) from sucrose using invertase derived from Saccharomyces cerevisiae. The reaction was conducted in a batch mode under free enzyme condition. Fructo-oligosaccharide formation was detected at a high sucrose concentration of over 200 g/L. The investigation was extended to study the effect of different parameters such as initial sucrose concentration (ISC), pH, and enzyme concentration. A maximum FOS yield of 10 % (dry basis) was observed using 525 g/L of ISC, with 6 U/mL of the enzyme, and pH 5.5 at 40 °C. 1-Kestose was the major product of among different forms of FOS. The FOS yield increased with an increase in sucrose concentration up to 525 g/L, beyond which it started to decrease. However, the maximum FOS yield was not affected by the increasing concentration of the enzyme beyond a certain level (2 U/mL). Furthermore, the activity of enzyme slightly increased with an increase in the pH up to 6, and thereafter it declined. Addition of glucose decreased the FOS yield because of enzyme inhibition. A five-step, ten-parameter model was developed, for which the simulation was performed in COPASI. The results predicted by the model were consistent with the experimental data.
Related Compounds
Related Articles:
Chemical genetics reveals a complex functional ground state of neural stem cells.
2007-05-01
[Nat. Chem. Biol. 3(5) , 268-273, (2007)]
2015-12-01
[Bioprocess Biosyst. Eng. 38 , 2417-26, (2015)]
2008-06-15
[Anal. Biochem. 377(2) , 251-258, (2008)]
Electrophoretic deposition to promote layer-by-layer assembly for in situ gene delivery application.
2015-09-01
[Colloids Surf. B Biointerfaces 133 , 171-8, (2015)]
Temperature Effects on Kinetic Parameters and Substrate Affinity of Cel7A Cellobiohydrolases.
2015-09-04
[J. Biol. Chem. 290 , 22193-202, (2015)]