Literature DB >> 2553519

Distribution and developmental transition of phosphoglycerate mutase and creatine phosphokinase isozymes in rat muscles of different fiber-type composition.

V Andrés1, R Cussó, J Carreras.   

Abstract

Phosphoglycerate mutase and creatine phosphokinase have in mammals three isozymes (types MM, MB and BB) with similar tissue distribution and developmental transition in muscle cells. To assess whether the phenotype and the developmental switch of these isozymes differ in the diverse types of muscle fibers, the enzymatic activities and the isozyme patterns, analyzed by cellulose acetate electrophoresis, have been determined in rat soleus, extensor digitorum longus and gastrocnemius muscles during postnatal development. Both phosphoglycerate mutase and creatine phosphokinase activity increased in the three muscles, the increase in extensor digitorum longus and gastrocnemius being higher than in soleus. For the two enzymes the increase in activity was due to the progressive increment of the muscle-specific forms. It is concluded that whereas phosphoglycerate mutase and creatine phosphokinase type-B subunits are present at similar levels in both type I and type II muscle fibers, phosphoglycerate mutase and creatine phosphokinase type-M subunits exhibit much higher levels in type II fibers.

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Year:  1989        PMID: 2553519     DOI: 10.1111/j.1432-0436.1989.tb00734.x

Source DB:  PubMed          Journal:  Differentiation        ISSN: 0301-4681            Impact factor:   3.880


  3 in total

1.  Nuclear location of phosphoglycerate mutase BB isozyme in rat tissues.

Authors:  G Egea; J M Ureña; X Graña; J Marsal; J Carreras; F Climent
Journal:  Histochemistry       Date:  1992

2.  Upregulation of heart PFK-2/FBPase-2 isozyme in skeletal muscle after persistent contraction.

Authors:  Jordi Rovira; Jose Maria Irimia; Mario Guerrero; Joan Aureli Cadefau; Roser Cussó
Journal:  Pflugers Arch       Date:  2012-01-13       Impact factor: 3.657

3.  Phosphocreatine-dependent protein phosphorylation in rat skeletal muscle.

Authors:  M Ouellet; E A Shoubridge
Journal:  Biochem J       Date:  1992-05-15       Impact factor: 3.857

  3 in total

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