Characterisation of two novel cyclodextrinases using on-line microdialysis sampling with high-performance anion exchange chromatography |
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Authors: | Carina Nilsson Frida Nilsson Pernilla Turner Martin Sixtensson Eva Nordberg Karlsson Olle Holst Arieh Cohen Lo Gorton |
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Affiliation: | (1) Department of Analytical Chemistry, Lund University, P.O. Box 124, 221 00 Lund, Sweden;(2) Department of Biotechnology, Lund University, P.O. Box 124, 221 00 Lund, Sweden;(3) Department of Occupational and Environmental Medicine,Institute of Laboratory Medicine, University Hospital, 221 85 Lund, Sweden |
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Abstract: | In this work, a real-time sampling/analytical method for on-line measurements of two newly discovered cyclomaltodextrinases
(CDases) has been developed and evaluated. This novel methodology not only allows the final products to be investigated, but
it also reveals enzyme-specific differences in the degradation pathways during the hydrolysis of different substrates, which
is a great advantage in the important tasks of investigating the mechanisms of and classifying new hydrolases, and is an advantage
that conventional techniques cannot offer. Two different enzymes, one CDase from Laceyella
sacchari (LsCda13) and one from Anoxybacillus flavithermus (AfCda13), were investigated during the hydrolysis of α-, β- and γ-cyclodextrin, and the hydrolysis products were sampled via
a microdialysis probe and injected on-line every 30 min into a high-performance anion exchange chromatography system equipped
with a pulsed amperometric detector (HPAEC–PAD), where they were identified. The enzymes yielded the same end-products, maltose
and glucose, in an approximate molar ratio of 2:1, but they exhibited distinctly different patterns of intermediate product
formation before reaching the end-point. LsCda13 had a more random distribution of the intermediate products, whereas AfCda13 showed the distinct intermediate production of maltotriose, which in some cases accumulated. |
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Keywords: | Enzyme hydrolysis Carbohydrate analysis
Laceyella sacchari (LsCda13)
Anoxybacillus flavithermus (AfCda13) Cyclodextrins (CD) |
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