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Titlebook: Alpha-Keto Acid Dehydrogenase Complexes; Mulchand S. Patel,Thomas E. Roche,Robert A. Harris Book 1996 Birkhäuser Verlag 1996 Molekularbiol

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Developments in High Energy Physicsse complexes, X component (the dihydrolipoamide dehydrogenase-binding protein) of the eucaryotic pyruvate dehydrogenase complex, and H-protein of the glycine cleavage system. The lipoyl moiety is attached in amide linkage to the ε-amino group of specific lysine residues of the proteins. Although the
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,Some Exact Results on π π Scattering, to activators and inhibitors (Cohen, 1989; Shenolikar and Nairn, 1991). Protein phosphatase 1 is sensitive to the thermostable proteins inhibitor 1 and inhibitor 2, and protein phosphatases 1 and 2A are sensitive to okadaic acid. Protein phosphatase 2B is Ca./calmodulin-regulated and protein phosph
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The Merchant Looks at Microbiologywell as short-term effects of starvation and diabetes to suppress glucose oxidation, long-term regulatory mechanisms impose an upper limit on the overall capacity for glucose oxidation and introduce latency of reactivation of glucose oxidation when a high-carbohydrate, low-fat meal is provided, or w
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The Merchant Looks at Microbiologyg step in the catabolism of branched-chain amino acids. The enzyme complex is subject to covalent modification; a phosphorylation / dephosphorylation cycle regulates the enzyme activity. It has been reported that dietary protein has a great effect on the activity state of the enzyme complex in rat l
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Adaptation of Microorganisms to Radiation increase in the dephosphorylated (active) form of the enzyme (Jungas, 1971; Linn, Pettit and Reed, 1969). MaCauley and Jarett (1985) demonstrated that the specific interconverting enzyme under insulin control was its phosphatase. They clearly demonstrated that a substance was produced when insulin
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Olena Ivanochko,Jennifer R. Calhounnverted to metabolites which then can be used in energy-producing reactions. Although some energy can be, and is, generated by anaerobic metabolism (e.g., in glycolysis), most energy in mammalian cells is generated through aerobic energy production in the mitochondria. Nearly all tissues can use car
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