Related Experiment Video
Updated: May 5, 2026

Author Spotlight: Membrane Protein Reconstitution in Synthetic Cells
Published on: March 8, 2024
Resolution and reconstitution of glutamate decarboxylase from cerebellum
1Department of Biochemistry, University of Iowa, 52242, Iowa City, Iowa.
Abstract:
Brain glutamate decraboxylase (EC 4.1.1.15) catalyzes the biosynthesis of the postulated neurotransmitterγ-aminobutyric acid according to the following chemical equation:L-glutamate →γ-aminobutyric acid+CO2. Hydroxylamine treatment of the decarboxylase at low ionic strength followed by Sephadex gel filtration resolves apoenzyme from cofactor (>90%). Pyridoxal phosphate completely restores activity. Sodium borohydride inactivates the holoenzyme, but not the apoenzyme. This supports the notion that pyridoxal phosphate is bound to the holoenzyme as a Schiff base. Moreover, salicylaldehyde, a reagent which reacts with amino groups, substantially inactivates the apoenzyme but not the holoenzyme. Reconstitution of the bovine cerebellar holoenzyme from apoglutatamate decarboxylase and pyridoxal phosphate occurs in seconds to minutes, which is much faster than that of the decarboxylase isolated fromE. coli. Native holoenzyme, apoenzyme, and reconstituted holoenzyme have identical molecular weights as estimated by Sephadex gel filtration.
More Related Videos
09:49Combined Optogenetic and Freeze-fracture Replica Immunolabeling to Examine Input-specific Arrangement of Glutamate Receptors in the Mouse Amygdala
Published on: April 15, 2016
08:10Selective Depletion of Microglia from Cerebellar Granule Cell Cultures Using L-leucine Methyl Ester
Published on: July 7, 2015