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Showing 1 to 5 of 5 for “"Multienzyme Complexes"”.

  1. Lipoate-protein and biotin-protein ligases of Escherichia coli

    … intermediates between separate active sites of multienzyme complexes. Escherichia coli synthesizes both compounds and also expresses a set of dedicated, highly specific cofactor-apoprotein ligases to generate protein bound lipoyl and biotinyl groups.

    uiuc Repository record for Lipoate-protein and biotin-protein ligases of Escherichia coli (opens in a new tab)

  2. Macromolecular Organization and Cell Function: A Multi-System Analysis

    … of cellular metabolism through the formation of multienzyme complexes. During division, the cell undergoes a profound morphological and molecular reorganization that includes the creation of the mitotic spindle, a process that must be highly controlled in order to ensure that accurate segregation …

    vt Repository record for Macromolecular Organization and Cell Function: A Multi-System Analysis (opens in a new tab)

  3. Proteomic Analysis of the Flavonoid Biosynthetic Machinery in Arabidopsis Thaliana

    … systems are often, if not always, organized as multienzyme complexes. Enzyme complexes have the potential to increase catalytic efficiency and provide unique mechanisms for the regulation of cellular metabolism. The flavonoid biosynthetic pathway of Arabidopsis is an excellent model for studying …

    vt Repository record for Proteomic Analysis of the Flavonoid Biosynthetic Machinery in Arabidopsis Thaliana (opens in a new tab)

  4. Genetic and Biochemical Analyses of the Necessity for Caspase Activation by the CED4-Domain Proteins, APAF-1 and DARK

    Activation of caspase proteases by Ced4 domain proteins is a critical step in the induction of programmed cell death, or apoptosis. Understanding of the genetic and biochemical regulation of the mammalian Ced-4 gene, Apaf-1, may be crucial to the understanding of autoimmune diseases, …

    utswmed Repository record for Genetic and Biochemical Analyses of the Necessity for Caspase Activation by the CED4-Domain Proteins, APAF-1 and DARK (opens in a new tab)

  5. Escherichia coli 2-oxoglutarate dehydrogenase multienzyme complex: e1 and e2 substrate specificty, e1 carboligase activity, and e2 interchain succinyl transfer

    … coli (E. coli) 2-oxoglutarate dehydrogenase multienzyme complex (OGDHc) contains three components: a thiamin di phosphate (ThD P) dependent 2-oxogl utarate dehydrogenase (E1 o), a di hydrol i poylsucci nyl transferase (E2o), and a di hydrol i poyl dehydrogenase (E3). The first two components …

    njit Repository record for Escherichia coli 2-oxoglutarate dehydrogenase multienzyme complex: e1 and e2 substrate specificty, e1 carboligase activity, and e2 interchain succinyl transfer (opens in a new tab)