CURTINO JUAN AGUSTÍN
Congresos y reuniones científicas
Título:
Functional characterization of human glycogen branching enzyme obtained in sf9 Cells
Autor/es:
ISSOGLIO, F.M.; CARRIZO, M.E.; CURTINO, J.A.
Lugar:
Carlos Paz, Córdoba
Reunión:
Congreso; XLII Reunión Anual de la Sociedad Argentina de Biofísica (SAB); 2013
Institución organizadora:
Sociedad Argentina de Biofísica (SAB)
Resumen:
Glucose is the principal source of energy for most cells. In mammals, glucose is stored as glycogen, the branched polymer formed by linear α-1,4-oligoglucan chains linked by α-1,6-glucosidic bonds.. Three enzymes are mainly responsible for the de novo biosynthesis of glycogen. First, glycogenin autoglucosylation produces a protein-bound oligoglucan that serves as primer for the other two enzymes, then glycogen synthase elongates the chains, and the glycogen branching enzyme catalyzes the cleavage of a linear segment and transfers it to the 6-position of a non-terminal glucosyl unit. Glycogen branching enzyme (GBE) is the least studied of the three enzymes. It has been isolated and characterized in some bacteria, rabbit and rat. In this study we report the production of recombinant human GBE in insect cells using the baculovirus expression system, and the activity analysis of the recombinant enzyme. Using amylose as a substrate, the branches introduced by GBE are analyzed after degradation with isoamylase. The new reducing oligosaccharides generated are subjected to fluorophore-assisted carbohydrate electrophoresis (FACE). In this method, saccharides having an aldehydic reducing end group are labeled quantitatively with a fluorophore and then separated by polyacrilamide gel electrophoresis (PAGE).