Structure and function of [alpha]-glucan debranching enzymes
[alpha]-Glucan debranching enzymes hydrolyse [alpha]-1,6-linkages in starch/glycogen, thereby, playing a central role in energy metabolism in all living organisms. They belong to glycoside hydrolase families GH13 and GH57 and several of these enzymes are industrially important. Nine GH13 subfamilies...
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Veröffentlicht in: | Cellular and molecular life sciences : CMLS 2016-07, Vol.73 (14), p.2619 |
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Sprache: | eng |
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Zusammenfassung: | [alpha]-Glucan debranching enzymes hydrolyse [alpha]-1,6-linkages in starch/glycogen, thereby, playing a central role in energy metabolism in all living organisms. They belong to glycoside hydrolase families GH13 and GH57 and several of these enzymes are industrially important. Nine GH13 subfamilies include [alpha]-glucan debranching enzymes; isoamylase and glycogen debranching enzymes (GH13_11); pullulanase type I/limit dextrinase (GH13_12-14); pullulan hydrolase (GH13_20); bifunctional glycogen debranching enzyme (GH13_25); oligo-1 and glucan-1,6-[alpha]-glucosidases (GH13_31); pullulanase type II (GH13_39); and [alpha]-amylase domains (GH13_41) in two-domain amylase-pullulanases. GH57 harbours type II pullulanases. Specificity differences, domain organisation, carbohydrate binding modules, sequence motifs, three-dimensional structures and specificity determinants are discussed. The phylogenetic analysis indicated that GH13_39 enzymes could represent a "missing link" between the strictly [alpha]-1,6-specific debranching enzymes and the enzymes with dual specificity and [alpha]-1,4-linkage preference. |
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ISSN: | 1420-682X 1420-9071 |
DOI: | 10.1007/s00018-016-2241-y |