Received: 2019-06-27
Accepted: 2019-08-06
Published Online: 2019-10-16
© 2019 Jorick Franceus et al., published by De Gruyter Open
Articles in the same Issue
- Molecular structure-property relations controlling mashing performance of amylases as a function of barley grain size
- Comparative study on amylosucrases derived from Deinococcus species and catalytic characterization and use of amylosucrase derived from Deinococcus wulumuqiensis
- A GH13 glycoside phosphorylase with unknown substrate specificity from Corallococcus coralloides
- Further structural studies of the lytic polysaccharide monooxygenase AoAA13 belonging to the starch-active AA13 family
Keywords for this article
glycoside phosphorylase;
Corallococcus coralloides;
glycoside hydrolase family GH13;
sucrose phosphorylase;
myxobacteria
Creative Commons
BY-NC-ND 4.0
Articles in the same Issue
- Molecular structure-property relations controlling mashing performance of amylases as a function of barley grain size
- Comparative study on amylosucrases derived from Deinococcus species and catalytic characterization and use of amylosucrase derived from Deinococcus wulumuqiensis
- A GH13 glycoside phosphorylase with unknown substrate specificity from Corallococcus coralloides
- Further structural studies of the lytic polysaccharide monooxygenase AoAA13 belonging to the starch-active AA13 family