
CHAPS Solubilization and Functional Reconstitution of β-Glucan Synthase from Red Beet Root (Beta vulgaris L.) Storage Tissue
Author(s) -
Margaret E. Sloan,
P. Rodis,
Bruce P. Wasserman
Publication year - 1987
Publication title -
plant physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.554
H-Index - 312
eISSN - 1532-2548
pISSN - 0032-0889
DOI - 10.1104/pp.85.2.516
Subject(s) - chaps , chromatography , centrifugation , chemistry , biochemistry , membrane , enzyme , phospholipid , size exclusion chromatography , microsome , sepharose
A method for the solubilization and reconstitution of red beet (1,3)-beta-d-glucan synthase with the detergent 3-[(3-cholamidopropyl) dimethylammonio]-1-propane sulfonate (CHAPS) was developed. Glucan synthase was effectively solubilized from microsomal or plasma membranes by 0.6% CHAPS in the presence of EGTA and EDTA. Chelators were found essential for effective solubilization and divalent cations inhibitory. A preextraction of membranes with 0.3% CHAPS and 5 millimolar Mg(2+) prior to the solubilization step was found to remove protein contaminants and increase the specific activity of the solubilized enzyme. Conditions for recovering activity from Sepharose 4B gel filtration columns were defined. Addition of phospholipids and low levels of CHAPS in column elution buffers resulted in complete functional reconstitution with 100% recovery of added activity. Specific activities were increased 20- to 22-fold over microsomes. Active vesicles were recovered by centrifugation. These results provide independent and direct confirmation of the enzyme's requirement for a phospholipid environment.