Superoxide Dismutase Isozymes in Different Human Tissues, Their Genetic Control and Intracellular Localization
G. Beckman, Erik Lundgren, Arne Tärnvik
Abstract
G. Beckman, Erik Lundgren, Arne Tärnvik
Abstract
Two isozymes of superoxide dismutase, A and B, were found in extracts of human organs, tissues and cell cultures. Differential centrifugation of cell homogenates revealed that isozyme A was localized in the soluble phase and isozyme B in fractions enriched in mitochondria. Isozyme B was lacking in erythrocytes and isozyme A in polymorphonuclear leucocytes. All other specimens showed both isozymes although in variable proportions. Evidence was presented suggesting that isozymes A and B are controlled by genes at separate gene loci. The occurrence of hybrid enzyme in a heterozygous phenotype of isozyme A suggests that the isozyme is a dimer made up of two identical polypeptide subunits.
OpenAlex reports 76 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Two isozymes of superoxide dismutase, A and B, were found in extracts of human organs, tissues and cell cultures. Differential centrifugation of cell homogenates revealed that isozyme A was localized in the soluble phase and isozyme B in fractions enriched in mitochondria. Isozyme B was lacking in erythrocytes and isozyme A in polymorphonuclear leucocytes. All other specimens showed both isozymes although in variable proportions. Evidence was presented suggesting that isozymes A and B are controlled by genes at separate gene loci. The occurrence of hybrid enzyme in a heterozygous phenotype of isozyme A suggests that the isozyme is a dimer made up of two identical polypeptide subunits.
Key concepts: Isozyme, Biology, Superoxide dismutase, Molecular biology, Gene, Biochemistry, Enzyme, Differential centrifugation