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  2. Mitochondrial matrix - Wikipedia

    en.wikipedia.org/wiki/Mitochondrial_matrix

    The mitochondrial matrix contains the mitochondrial DNA, ribosomes, soluble enzymes, small organic molecules, nucleotide cofactors, and inorganic ions. [1] The enzymes in the matrix facilitate reactions responsible for the production of ATP , such as the citric acid cycle , oxidative phosphorylation , oxidation of pyruvate , and the beta ...

  3. ATP synthase - Wikipedia

    en.wikipedia.org/wiki/ATP_synthase

    The same process takes place in the mitochondria, where ATP synthase is located in the inner mitochondrial membrane and the F 1-part projects into the mitochondrial matrix. By pumping proton cations into the matrix, the ATP-synthase converts ADP into ATP.

  4. Oxidative phosphorylation - Wikipedia

    en.wikipedia.org/wiki/Oxidative_phosphorylation

    It is an enzyme that accepts electrons from electron-transferring flavoprotein in the mitochondrial matrix, and uses these electrons to reduce ubiquinone. [30] This enzyme contains a flavin and a [4Fe–4S] cluster, but, unlike the other respiratory complexes, it attaches to the surface of the membrane and does not cross the lipid bilayer. [31]

  5. Adenine nucleotide translocator - Wikipedia

    en.wikipedia.org/wiki/Adenine_nucleotide_trans...

    Free ADP is transported from the cytoplasm to the mitochondrial matrix, while ATP produced from oxidative phosphorylation is transported from the mitochondrial matrix to the cytoplasm, thus providing the cell with its main energy currency. [4] ADP/ATP translocases are exclusive to eukaryotes and are thought to have evolved during eukaryogenesis ...

  6. Chemiosmosis - Wikipedia

    en.wikipedia.org/wiki/Chemiosmosis

    In mitochondria, energy released by the electron transport chain is used to move protons from the mitochondrial matrix (N side) to the intermembrane space (P side). Moving the protons out of the mitochondrion creates a lower concentration of positively charged protons inside it, resulting in excess negative charge on the inside of the membrane.

  7. Malate–aspartate shuttle - Wikipedia

    en.wikipedia.org/wiki/Malate–aspartate_shuttle

    Since the malate–aspartate shuttle regenerates NADH inside the mitochondrial matrix, it is capable of maximizing the number of ATPs produced in glycolysis (3/NADH), ultimately resulting in a net gain of 38 ATP molecules per molecule of glucose metabolized.

  8. ATP5F1A - Wikipedia

    en.wikipedia.org/wiki/ATP5F1A

    This gene encodes a subunit of mitochondrial ATP synthase. Mitochondrial ATP synthase catalyzes ATP synthesis, using an electrochemical gradient of protons across the inner membrane during oxidative phosphorylation. ATP synthase is composed of two linked multi-subunit complexes: the soluble catalytic core, F 1, and the membrane-spanning ...

  9. Electron transport chain - Wikipedia

    en.wikipedia.org/wiki/Electron_transport_chain

    The F O component of ATP synthase acts as an ion channel that provides for a proton flux back into the mitochondrial matrix. It is composed of a, b and c subunits. Protons in the inter-membrane space of mitochondria first enter the ATP synthase complex through an a subunit channel. Then protons move to the c subunits. [11]