Nucleotide binding to human uncoupling protein-2 refolded from bacterial inclusion bodies
Open Access
- 1 September 2002
- journal article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 366 (2) , 565-571
- https://doi.org/10.1042/bj20020469
Abstract
Experiments were performed to test the hypothesis that recombinant human uncoupling protein-2 (UCP2) ectopically expressed in bacterial inclusion bodies binds nucleotides in a manner identical with the nucleotide-inhibited uncoupling that is observed in kidney mitochondria. For this, sarkosyl-solubilized UCP2 inclusion bodies were treated with the polyoxyethylene ether detergent C12E9 and hydroxyapatite. Protein recovered from hydroxyapatite chromatography was approx. 90% pure UCP2, as judged by Coomassie Blue and silver staining of polyacrylamide gels. Using fluorescence resonance energy transfer, N-methylanthraniloyl-tagged purine nucleoside di- and tri-phosphates exhibited enhanced fluorescence with purified UCP2. Dissociation constants determined by least-squares non-linear regression indicated that the affinity of UCP2 for these fluorescently tagged nucleotides was 3–5μM or perhaps an order of magnitude stronger, depending on the model used. Competition experiments with [8-14C]ATP demonstrated that UCP2 binds unmodified purine and pyrimidine nucleoside triphosphates with 2–5μM affinity. Affinities for ADP and GDP were approx. 10-fold lower. These data indicate that: UCP2 (a) is at least partially refolded from sarkosyl-solubilized bacterial inclusion bodies by a two-step treatment with C12E9 detergent and hydroxyapatite; (b) binds purine and pyrimidine nucleoside triphosphates with low micromolar affinity; (c) binds GDP with the same affinity as GDP inhibits superoxide-stimulated uncoupling by kidney mitochondria; and (d) exhibits a different nucleotide preference than kidney mitochondria.Keywords
This publication has 16 references indexed in Scilit:
- Superoxide activates mitochondrial uncoupling proteinsNature, 2002
- Physiological Levels of Mammalian Uncoupling Protein 2 Do Not Uncouple Yeast MitochondriaJournal of Biological Chemistry, 2001
- Uncoupling Protein 2, in Vivo Distribution, Induction upon Oxidative Stress, and Evidence for Translational RegulationJournal of Biological Chemistry, 2001
- Uncoupling proteins 2 and 3 are highly active H + transporters and highly nucleotide sensitive when activated by coenzyme Q (ubiquinone)Proceedings of the National Academy of Sciences, 2001
- Retinoids activate proton transport by the uncoupling proteins UCP1 and UCP2The EMBO Journal, 1999
- Transport Function and Regulation of Mitochondrial Uncoupling Proteins 2 and 3Journal of Biological Chemistry, 1999
- The Phosphate Carrier from Yeast MitochondriaJournal of Biological Chemistry, 1998
- Fluorescent Nucleotide Derivatives as Specific Probes for the Uncoupling Protein: Thermodynamics and Kinetics of Binding and the Control by pHBiochemistry, 1995
- Nucleotide binding to uncoupling protein. Mechanism of control by protonationBiochemistry, 1988
- Coupled Endogenous Respiration in Brown Adipose Tissue MitochondriaEuropean Journal of Biochemistry, 1970