Uncoupling protein in embryonic brown adipose tissue--existence of nonthermogenic and thermogenic mitochondria
Language English Country Netherlands Media print
Document type Journal Article
PubMed
2900653
DOI
10.1016/0005-2728(88)90103-x
PII: 0005-2728(88)90103-X
Knihovny.cz E-resources
- MeSH
- Cell Differentiation MeSH
- Embryo, Mammalian MeSH
- Embryonic and Fetal Development * MeSH
- Adipose Tissue, Brown enzymology physiology ultrastructure MeSH
- Rats, Inbred Strains MeSH
- Ion Channels MeSH
- Rats MeSH
- Membrane Proteins isolation & purification physiology MeSH
- Mitochondrial Proteins MeSH
- Mitochondria enzymology physiology MeSH
- Mice, Inbred BALB C MeSH
- Mice MeSH
- Proton-Translocating ATPases isolation & purification MeSH
- Electron Transport Complex IV isolation & purification MeSH
- Body Temperature Regulation * MeSH
- Carrier Proteins * MeSH
- Uncoupling Protein 1 MeSH
- Animals MeSH
- Check Tag
- Rats MeSH
- Mice MeSH
- Animals MeSH
- Publication type
- Journal Article MeSH
- Names of Substances
- Ion Channels MeSH
- Membrane Proteins MeSH
- Mitochondrial Proteins MeSH
- Proton-Translocating ATPases MeSH
- Electron Transport Complex IV MeSH
- Carrier Proteins * MeSH
- Uncoupling Protein 1 MeSH
Embryonic development of mouse and rat brown adipose tissue was characterized by electron microscopy and by quantifying the mitochondrial oxidative, phosphorylating and thermogenic capacities immunochemically, using antibodies against cytochrome oxidase, F1-ATPase and uncoupling protein, respectively. Mitochondria and cytochrome oxidase were detected from the 15-16th day of pregnancy and their amounts continuously increased toward birth. F1-ATPase was also found on the 15th day but it reached a maximum level already on the 19th day when the uncoupling protein appeared and rapidly increased during further maturation of brown adipose tissue. It thus appears that mitochondria in early prenatal brown adipose tissue lack completely uncoupling protein and are nonthermogenic. They transform into typical thermogenic mitochondria abruptly only 2 days before birth.
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