Substitutional mutations in the uncoupling protein-specific sequences of mitochondrial uncoupling protein UCP1 lead to the reduction of fatty acid-induced H+ uniport
Jazyk angličtina Země Nizozemsko Médium print
Typ dokumentu časopisecké články, práce podpořená grantem
PubMed
12479871
DOI
10.1016/s1357-2725(02)00131-0
PII: S1357272502001310
Knihovny.cz E-zdroje
- MeSH
- chloridy metabolismus MeSH
- guanosintrifosfát metabolismus MeSH
- iontové kanály MeSH
- iontový transport účinky léků fyziologie MeSH
- kinetika MeSH
- krysa rodu Rattus MeSH
- kyseliny laurové farmakologie MeSH
- liposomy chemie MeSH
- mastné kyseliny metabolismus farmakologie MeSH
- membránové proteiny chemie genetika metabolismus MeSH
- mitochondriální proteiny MeSH
- mitochondrie metabolismus MeSH
- mutageneze cílená MeSH
- Saccharomyces cerevisiae - proteiny chemie genetika metabolismus MeSH
- Saccharomyces cerevisiae genetika metabolismus MeSH
- substituce aminokyselin MeSH
- transportní proteiny chemie genetika metabolismus MeSH
- uncoupling protein 1 MeSH
- vodík metabolismus MeSH
- vztahy mezi strukturou a aktivitou MeSH
- zvířata MeSH
- Check Tag
- krysa rodu Rattus MeSH
- zvířata MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
- Názvy látek
- chloridy MeSH
- guanosintrifosfát MeSH
- iontové kanály MeSH
- kyseliny laurové MeSH
- lauric acid MeSH Prohlížeč
- liposomy MeSH
- mastné kyseliny MeSH
- membránové proteiny MeSH
- mitochondriální proteiny MeSH
- Saccharomyces cerevisiae - proteiny MeSH
- transportní proteiny MeSH
- Ucp1 protein, rat MeSH Prohlížeč
- uncoupling protein 1 MeSH
- vodík MeSH
Mutants were constructed for mitochondrial uncoupling protein UCP1, with single or multiple substitutions within or nearby the UCP-signatures located in the first alpha-helix and second matrix-segment, using the QuickChange site directed mutagenesis protocol (Stratagene), and were assayed fluorometrically for kinetics of fatty acid (FA)-induced H+ uniport and for Cl- uniport. Their ability to bind 3H-GTP was also evaluated. The wild type UCP1 was associated with the FA-induced H+ uniport proportional to the added protein with a Km for lauric acid of 43 micro M and Vmax of 18 micro molmin(-1)(mg protein)(-1). Neutralization of Arg152 (in the second matrix-segment UCP-signature) led to approximately 50% reduction of FA affinity (reciprocal Km) and of Vmax for FA-induced H+ uniport. Halved FA affinity and 70% reduction of Vmax was found for the double His substitution outside the signature (H145L and H147L mutant). Neutralization of Asp27 in the first alpha-helix UCP-signature (D27V mutant) resulted in 75% reduction of FA affinity and approximately 50% reduction of Vmax, whereas the triple C24A and D27V and T30A mutant was fully non-functional (Vmax reduced by 90%). Interestingly, the T30A mutant exhibited only the approximately 50% reduced FA affinity but not Vmax. Cl- uniport and 3H-GTP binding were preserved in all studied mutants. We conclude that amino acid residues of the first alpha-helix UCP signature may be required to hold the intact UCP1 transport conformation. This could be valid also for the positive charge of Arg152 (second matrix-segment UCP signature), which may alternatively mediate FA interaction with the native protein.
Citace poskytuje Crossref.org
Mitochondrial Uncoupling Proteins: Subtle Regulators of Cellular Redox Signaling