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Showing 1 to 4 of 4 for “"Mg-ADP."”.

  1. Interactions of ATP, ADP and magnesium ion with rubisco activase and their effects on rubisco activation

    … activation of rubisco in the presence of ATP and Mg$\sp{2+}$. The fluorescent dye 1-anilinonaphthalene-8-sulfonate was used to study the binding of rubisco activase with ligands. The results indicated that rubisco activase bound ADP (k$\sb{\rm d}$ = 0.76 $\mu$M) more tightly than ATP (k$\sb{\rm …

    uiuc Repository record for Interactions of ATP, ADP and magnesium ion with rubisco activase and their effects on rubisco activation (opens in a new tab)

  2. Paracoccus denitrificans as a model system for studying the mechanism of respiratory complex I

    … ATP synthase and the inhibitory role of Mg-ADP. Next, a strain of P. denitrificans containing an alternative NADH dehydrogenase, a bypass enzyme, was generated to facilitate the creation of deleterious complex I variants. In addition, a purification tag was engineered onto complex I, …

    cambridge Repository record for Paracoccus denitrificans as a model system for studying the mechanism of respiratory complex I (opens in a new tab)

  3. Untersuchung der Reaktionszyklen von Chaperoninen aus Escherichia coli und Thermoplasma acidophilum mit Hilfe der Neutronenkleinwinkelstreuung

    … Die Strukturen von apo-single-ring-GroEL und ADP-Komplexen aus protoniertem singlering- GroEL und protoniertem GroES unterscheiden sich nicht oder nicht meßbar von den entsprechenden Strukturen im Kristall. Bei einer Messung mit ADP-Komplexen aus unsichtbarem single-ring-GroEL und sichtbarem …

    lmu-germany Repository record for Untersuchung der Reaktionszyklen von Chaperoninen aus Escherichia coli und Thermoplasma acidophilum mit Hilfe der Neutronenkleinwinkelstreuung (opens in a new tab)

  4. Molecular Modulation of a-Subunit VISIT-DG Sequence Residue Asp-350 in the Catalytic sites of <em>Escherichia coli</em> ATP Synthase.

    <p>ATP Synthase is the fundamental means of cellular energy production in animals, plants, and almost all microorganisms. In order to understand the mechanism of ATP catalysis, critical amino acid residues involved in Pi binding have to be identified. The αVISIT-DG sequence at the interface of α/β …

    etsu Repository record for Molecular Modulation of a-Subunit VISIT-DG Sequence Residue Asp-350 in the Catalytic sites of <em>Escherichia coli</em> ATP Synthase. (opens in a new tab)