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Calcium-dependent regulation of glycogen synthase activity in a muscle glycogen particle

Authors :
Balwant S. Khatra
Thomas R. Soderling
Ashok K. Srivastava
Source :
Archives of Biochemistry and Biophysics. 205:291-296
Publication Year :
1980
Publisher :
Elsevier BV, 1980.

Abstract

The calcium-dependent inactivation of glycogen synthase in an isolated glycogen-protein complex (glycogen pellet) from rabbit skeletal muscle has been investigated. Addition of 1 m m Ca2+, 10 m m Mg2+, and 1 m m ATP-γ-S to a concentrated suspension of glycogen pellet resulted in a rapid activation of glycogen phosphorylase concomitant with an inactivation of glycogen synthase. These conversion reactions were blocked by ethylene glycol bis(β-aminoethyl ether) N, N′-tetraacetic acid or by pretreatment of the complex with an antiserum to purified phosphorylase kinase. These data suggest that in the glycogen-protein complex, which may be a functional unit of glycogen metabolism in vivo, phosphorylase kinase can catalyze a Ca2+-dependent activation of glycogen phosphorylase synchronized with an inactivation of glycogen synthase. If under similar conditions phosphoprotein phosphatase activity was assayed using exogenous [32P]phosphorylase, there was an apparent inactivation of the phosphatase. Evidence is presented that this apparent inactivation of phosphatase was due to an accumulation of endogenous phosphorylase a which acted as an inhibitor to the exogenous [32P]-phosphorylase.

Details

ISSN :
00039861
Volume :
205
Database :
OpenAIRE
Journal :
Archives of Biochemistry and Biophysics
Accession number :
edsair.doi.dedup.....5a17584e3c8ee8ea442cb05fc92f8c45
Full Text :
https://doi.org/10.1016/0003-9861(80)90110-1