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  2. Hydrolysis - Wikipedia

    en.wikipedia.org/wiki/Hydrolysis

    All living cells require a continual supply of energy for two main purposes: the biosynthesis of micro and macromolecules, and the active transport of ions and molecules across cell membranes. The energy derived from the oxidation of nutrients is not used directly but, by means of a complex and long sequence of reactions, it is channeled into a ...

  3. Phosphatase - Wikipedia

    en.wikipedia.org/wiki/Phosphatase

    The general reaction catalyzed by a phosphatase enzyme. Phosphatases catalyze the hydrolysis of a phosphomonoester, removing a phosphate moiety from the substrate. Water is split in the reaction, with the -OH group attaching to the phosphate ion, and the H+ protonating the hydroxyl group of the other product. The net result of the reaction is ...

  4. Translocase - Wikipedia

    en.wikipedia.org/wiki/Translocase

    This form of membrane transport is classified under active membrane transport, an energy-requiring process of pumping molecules and ions across membranes against a concentration gradient. [ 6 ] Translocases biological importance relies primarily on their critical function, in the way that they provide movement across the cell's membrane in many ...

  5. ATP synthase - Wikipedia

    en.wikipedia.org/wiki/ATP_synthase

    The enzyme is integrated into thylakoid membrane; the CF 1-part sticks into stroma, where dark reactions of photosynthesis (also called the light-independent reactions or the Calvin cycle) and ATP synthesis take place. The overall structure and the catalytic mechanism of the chloroplast ATP synthase are almost the same as those of the bacterial ...

  6. Chemiosmosis - Wikipedia

    en.wikipedia.org/wiki/Chemiosmosis

    The bacterial cell wall is omitted, gram-positive bacterial cells do not have outer membrane. [6] The complete breakdown of glucose releasing its energy is called cellular respiration. The last steps of this process occur in mitochondria. The reduced molecules NADH and FADH 2 are generated by the Krebs cycle, glycolysis, and pyruvate processing.

  7. Membrane transport - Wikipedia

    en.wikipedia.org/wiki/Membrane_transport

    Where the hydrolysis of the energy provider is indirect as is the case in secondary active transport, use is made of the energy stored in an electrochemical gradient. For example, in co-transport use is made of the gradients of certain solutes to transport a target compound against its gradient, causing the dissipation of the solute gradient.

  8. ATPase - Wikipedia

    en.wikipedia.org/wiki/ATPase

    Rotating the c-ring causes three ATP molecules to be made, which then causes H + to move from the P-side (positive-side) of the membrane to the N-side (negative-side) of the membrane. The counterclockwise rotation of the c-ring is driven by ATP hydrolysis and ions move from the N-side to the P-side, which helps to build up electrochemical ...

  9. Active transport - Wikipedia

    en.wikipedia.org/wiki/Active_transport

    The energy derived from the pumping of protons across a cell membrane is frequently used as the energy source in secondary active transport. In humans, sodium (Na + ) is a commonly cotransported ion across the plasma membrane, whose electrochemical gradient is then used to power the active transport of a second ion or molecule against its ...