Mitochondrial uncoupling protein may participate in futile cycling of pyruvate and other monocarboxylates
Jazyk angličtina Země Spojené státy americké Médium print
Typ dokumentu časopisecké články, práce podpořená grantem
- MeSH
- biologický transport MeSH
- guanosindifosfát farmakologie MeSH
- hnědá tuková tkáň metabolismus MeSH
- iontové kanály MeSH
- karbonylkyanid-p-trifluormethoxyfenylhydrazon farmakologie MeSH
- kinetika MeSH
- koncentrace vodíkových iontů MeSH
- křečci praví MeSH
- křeček rodu Mesocricetus MeSH
- kyseliny fenylpyrohroznové farmakologie MeSH
- kyseliny karboxylové metabolismus MeSH
- kyseliny kumarové farmakologie MeSH
- lipidové dvojvrstvy MeSH
- membránové proteiny metabolismus MeSH
- mitochondriální proteiny MeSH
- mitochondrie účinky léků metabolismus MeSH
- monensin farmakologie MeSH
- pyruváty metabolismus MeSH
- rotenon farmakologie MeSH
- transportní proteiny metabolismus MeSH
- uncoupling protein 1 MeSH
- valinomycin farmakologie MeSH
- zduření mitochondrií účinky léků fyziologie MeSH
- zvířata MeSH
- Check Tag
- křečci praví MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
- Názvy látek
- alpha-cyano-4-hydroxycinnamate MeSH Prohlížeč
- guanosindifosfát MeSH
- iontové kanály MeSH
- karbonylkyanid-p-trifluormethoxyfenylhydrazon MeSH
- kyseliny fenylpyrohroznové MeSH
- kyseliny karboxylové MeSH
- kyseliny kumarové MeSH
- lipidové dvojvrstvy MeSH
- membránové proteiny MeSH
- mitochondriální proteiny MeSH
- monensin MeSH
- phenylpyruvic acid MeSH Prohlížeč
- pyruváty MeSH
- rotenon MeSH
- transportní proteiny MeSH
- uncoupling protein 1 MeSH
- valinomycin MeSH
The physiological role of monocarboxylate transport in brown adipose tissue mitochondria has been reevaluated. We studied pyruvate, alpha-ketoisovalerate, alpha-ketoisocaproate, and phenylpyruvate uniport via the uncoupling protein (UCP1) as a GDP-sensitive swelling in K+ salts induced by valinomycin or by monensin and carbonyl cyanide-p-(trifluoromethoxy)phenylhydrazone in Na+ salts. We have demonstrated that this uniport is inhibited by fatty acids. GDP inhibition in K+ salts was not abolished by an uncoupler, indicating a negligible monocarboxylic acid penetration via the lipid bilayer. In contrast, the electroneutral pyruvate uptake (swelling in ammonium pyruvate or potassium pyruvate induced by change in pH) mediated by the pyruvate carrier was inhibited by its specific inhibitor alpha-cyano-4-hydroxycinnamate but not by fatty acids. Moreover, alpha-cyano-4-hydroxycinnamate enhanced the energization of brown adipose tissue mitochondria, which was monitored fluorometrically by 2-(4-dimethylaminostyryl)-1-methylpyridinium iodide and safranin O. Consequently, we suggest that UCP1 might participate in futile cycling of unipolar ketocarboxylates under certain physiological conditions while expelling these anions from the matrix. The cycle is completed on their return via the pyruvate carrier in an H+ symport mode.
Citace poskytuje Crossref.org
Mitochondrial Uncoupling Proteins: Subtle Regulators of Cellular Redox Signaling
Channel character of uncoupling protein-mediated transport