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1 to be enriched in starch debranching enzyme (pullulanase).
2 ng enzyme besides the neopullulanase and the pullulanase.
3 rgistic effect was found under conditions of pullulanase (1 U/ml/5h) and IR (220 (o)C/3 min) treatmen
4 ches were subjected to enzymatic hydrolysis (pullulanase, 40 U/g per 10h), autoclaved (121 degrees C/
5 es encoding the extracellular SpeB protease, pullulanase A (PulA), and two extracellular nucleases (S
6 gradation; pulA encodes a cell wall anchored pullulanase and amyA encodes a freely secreted putative
7 reated sorghum grains were modified by using pullulanase and infrared (IR) irradiation to decrease st
9 -bound starch synthase, debranching enzymes, pullulanase, and starch phosphorylases were largely down
11 f how thioredoxin h enhances the activity of pullulanase because it was found that the inhibitor had
14 and two enzymes modification (alpha-amylase/pullulanase) falls under the former classification and t
15 ing) and two enzymes modification (a-amylase/pullulanase) falls under the former classification and t
16 enhanced by debranching cassava starch using pullulanase followed by high pressure or cyclic high-pre
17 mutant, with a disruption in susA and in the pullulanase gene, pulI, was also able to grow on pullula
20 e activity of the starch debranching enzyme, pullulanase (limit dextrinase), the enzyme that specific
21 beta-amylase, starch phosphorylase, maltase, pullulanase or D-enzyme could be detected in crude extra
23 isorder propensities of Bacillus naganoensis pullulanase (PUL) using the bioinformatics tool, Disorde
24 olysaccharide (LPS) O-polysaccharide and the pullulanase (PulA) type 2 secretion system (T2SS) are re
26 ) and the outer membrane protein PulD of the pullulanase secretion system failed to identify a compar
30 r maltooligosaccharides, indicating that the pullulanase-type DBE functions in glucan hydrolysis duri
37 tified motifs common to both isoamylase- and pullulanase-type enzymes, as well as class-specific sequ
38 tified and purified specific isoamylase- and pullulanase-type starch-debranching enzymes (DBEs) prese