The Mechanism FA-Dependent H+ Transport by UCP1
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/164_2018_138
Reference51 articles.
1. Aquila H, Link TA, Klingenberg M (1985) The uncoupling protein from brown fat mitochondria is related to the mitochondrial ADP/ATP carrier. Analysis of sequence homologies and of folding of the protein in the membrane. EMBO J 4:2369–2376
2. Berardi MJ, Shih WM, Harrison SC, Chou JJ (2011) Mitochondrial uncoupling protein 2 structure determined by NMR molecular fragment searching. Nature 476:109–113
3. Bertholet AM, Kirichok Y (2017) UCP1: a transporter for H+ and fatty acid anions. Biochimie 134:28–34
4. Bertholet AM, Kazak L, Chouchani ET, Bogaczynska MG, Paranjpe I, Wainwright GL, Betourne A, Kajimura S, Spiegelman BM, Kirichok Y (2017) Mitochondrial patch clamp of beige adipocytes reveals UCP1-positive and UCP1-negative cells both exhibiting futile creatine cycling. Cell Metab 25:811–822.e814
5. Bouillaud F, Weissenbach J, Ricquier D (1986) Complete cDNA-derived amino acid sequence of rat brown fat uncoupling protein. J Biol Chem 261:1487–1490
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