Abstract
1. Methods of disrupting Krebs II mouse ascites-tumour cells have been studied. After washing the cells free of ions with sucrose solutions, rapid disruption was obtained in sucrose by use of an Ultra-Turrax disintegrator or a Dounce homogenizer. 2. Disruption of cells after osmotic shock led to the loss of proteins, especially cytochrome c, from the mitochondria. Such losses did not occur when cells were disrupted by shear in 0.3 m-sucrose. 3. The distribution of protein, RNA, DNA, malate dehydrogenase, cytochrome c, cytochrome oxidase and succin-oxidase was measured in the various cell fractions after separation by differential centrifuging. 4. The mitochondrial fraction sedimented at 9500g was further fractionated by equilibrium sedimentation in a sucrose gradient. The distribution of protein and enzyme activity in the gradient indicated that the 9500g pellet contains other material besides mitochondria. 5. Krebs-cell mitochondria contain up to five times as much RNA as do liver mitochondria. 6. After purification by equilibrium centrifugation Krebs-cell mitochondria still contain traces of DNA.
Keywords
BIOCHEMISTRY
CENTRIFUGATION
CYTOCHROME OXIDASE
CYTOCHROMES
DNA
EXPERIMENTAL LAB STUDY
HOMOGENATES
MALATE DEHYDROGENASE
MICE
MICROSOMES
MITOCHONDRIA
PROTEIN METABOLISM
PROTEINS
RNA
SPECTROPHOTOMETRY
SUCCINATE DEHYDROGENASE
TISSUE CULTURE
MeSH Terms
Animals
Ascites
Biochemical Phenomena
Biochemistry
Centrifugation
Cytochromes
DNA
Electron Transport Complex IV
Malate Dehydrogenase
Mice
Microsomes
Mitochondria
Mitochondria, Liver
Neoplasms
Oxidoreductases
Proteins/metabolism
RNA
Research
Spectrophotometry
Succinate Dehydrogenase
Tissue Culture Techniques
Chemicals
Cytochromes
Proteins
RNA
DNA
Oxidoreductases
Malate Dehydrogenase
Succinate Dehydrogenase
Electron Transport Complex IV
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
FREEMAN K B
References (23)
23 references, click to expand
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