Substrate binding in the mitochondrial ADP/ATP carrier is a step-wise process guiding the structural changes in the transport cycle
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Mavridou, Vasiliki
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King, Martin S.
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Univ Cambridge, Med Res Council, Mitochondrial Biol Unit, Cambridge Biomed Campus,Keith Peters Bldg, Cambridge CB2 0XY, EnglandUniv Cambridge, Med Res Council, Mitochondrial Biol Unit, Cambridge Biomed Campus,Keith Peters Bldg, Cambridge CB2 0XY, England
King, Martin S.
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Tavoulari, Sotiria
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Univ Cambridge, Med Res Council, Mitochondrial Biol Unit, Cambridge Biomed Campus,Keith Peters Bldg, Cambridge CB2 0XY, EnglandUniv Cambridge, Med Res Council, Mitochondrial Biol Unit, Cambridge Biomed Campus,Keith Peters Bldg, Cambridge CB2 0XY, England
Tavoulari, Sotiria
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Ruprecht, Jonathan J.
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Univ Cambridge, Med Res Council, Mitochondrial Biol Unit, Cambridge Biomed Campus,Keith Peters Bldg, Cambridge CB2 0XY, EnglandUniv Cambridge, Med Res Council, Mitochondrial Biol Unit, Cambridge Biomed Campus,Keith Peters Bldg, Cambridge CB2 0XY, England
Ruprecht, Jonathan J.
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Palmer, Shane M.
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Univ Cambridge, Med Res Council, Mitochondrial Biol Unit, Cambridge Biomed Campus,Keith Peters Bldg, Cambridge CB2 0XY, EnglandUniv Cambridge, Med Res Council, Mitochondrial Biol Unit, Cambridge Biomed Campus,Keith Peters Bldg, Cambridge CB2 0XY, England
Palmer, Shane M.
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Kunji, Edmund R. S.
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Univ Cambridge, Med Res Council, Mitochondrial Biol Unit, Cambridge Biomed Campus,Keith Peters Bldg, Cambridge CB2 0XY, EnglandUniv Cambridge, Med Res Council, Mitochondrial Biol Unit, Cambridge Biomed Campus,Keith Peters Bldg, Cambridge CB2 0XY, England
Kunji, Edmund R. S.
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[1] Univ Cambridge, Med Res Council, Mitochondrial Biol Unit, Cambridge Biomed Campus,Keith Peters Bldg, Cambridge CB2 0XY, England
The mitochondrial ADP/ATP carrier transports adenine nucleotides. Here, authors identify the residues involved in substrate binding. One set forms the central substrate binding site and two asparagine/arginine pairs help to guide the substrates during the transport cycle. Mitochondrial ADP/ATP carriers import ADP into the mitochondrial matrix and export ATP to the cytosol to fuel cellular processes. Structures of the inhibited cytoplasmic- and matrix-open states have confirmed an alternating access transport mechanism, but the molecular details of substrate binding remain unresolved. Here, we evaluate the role of the solvent-exposed residues of the translocation pathway in the process of substrate binding. We identify the main binding site, comprising three positively charged and a set of aliphatic and aromatic residues, which bind ADP and ATP in both states. Additionally, there are two pairs of asparagine/arginine residues on opposite sides of this site that are involved in substrate binding in a state-dependent manner. Thus, the substrates are directed through a series of binding poses, inducing the conformational changes of the carrier that lead to their translocation. The properties of this site explain the electrogenic and reversible nature of adenine nucleotide transport.