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Biomedica Biochimica Acta|January 1, 1991
Processes linked to the formation of reactive oxygen species are not necessarily involved in the development of isoproterenol-induced hypertrophy of the heart. The effect of stobadineO Ondrejicková, A Dzurba, J Sedlák, et al.Biomedica Biochimica Acta|January 1, 1991
Kinetics of 6-phosphofructo-1-kinase from a yeast mutantM Bigl, K Eschrich, E HofmannBiomedica Biochimica Acta|January 1, 1989
Effect of gliadin on the distribution of sucrase among different fractions of fetal chick intestineT Mothes, W Mühle, F Müller, et al.Biomedica Biochimica Acta|January 1, 1989
The influence of sex hormones on the development of sex-specific cholesterol serum levels in ratsP E Kahl, F Götz, G Dörner, et al.Biomedica Biochimica Acta|January 1, 1986
Protein products synthesized by a cloned viral protease geneB D Korant, T TowatariBiomedica Biochimica Acta|January 1, 1986
How does glucose initiate proteolysis of yeast fructose-1,6-bisphosphatase?H Holzer, C PurwinBiomedica Biochimica Acta|January 1, 1987
Effect of substrate heat-denaturation on ATP- and ubiquitin-dependent proteolysisW Dubiel, I Drung, M Müller, et al.Biomedica Biochimica Acta|January 1, 1987
Coronary and myocardial adenosine receptorsJ Schrader, K Kroll, M Henrich, et al.Biomedica Biochimica Acta|January 1, 1987
Isoproterenol induces both cAMP- and calcium-dependent phosphorylation of phospholamban in canine heart in vivoP Karczewski, S Bartel, H Haase, et al.Biomedica Biochimica Acta|January 1, 1987
Some properties of the active site and cation binding site of the heart sarcolemmal (Na+ + K+)-ATPaseA Ziegelhöffer, A Breièr, R Monosíková, et al.Pageof 197