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Titlebook: Dynamic Biological Organization; Fundamentals as Appl M. A. Aon,S. Cortassa Book 1997 M.A. Aon and S. Cortassa 1997 base.biochemistry.cells

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About the dynamic behaviour of microorganismse evaluation of the microorganism’s physiology and metabolism. In addition, chemostat cultures allow definition of the phase of behaviour which suits a purpose that we may fix ourselves — for example, maximum substrate consumption and output fluxes of metabolic by-products of interest.
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Spatio-temporal coordination of cellular energetics and metabolism during developmentgenetic fields such that form arises in developing organisms at macroscopic scales (micrometres to millimetres, i.e. the characteristic lengths over which biological form is generated). Indeed, molecules caught in the spatio-temporal window of milliseconds and nanometres are not able to create anist
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Cell growth and differentiation from the perspective of dynamics and thermodynamics of cellular and sm and involves enzyme activity modulation by gene expression. It deals with the following questions. Might a balanced pattern of fluxes, genetically and environmentally determined, be a determinant of growth, proliferation or differentiation? Might that pattern of fluxes somehow mediate gene expres
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Dynamic coupling and spatio–temporal coherence in cellular systemsresults from the intrinsic dynamics of the processes taking place in living systems. This intrinsic dynamics may be either autonomous or forced by environmental (extra–or intracellular) perturbations. Dynamic organization results from the evolution of the spatio-temporal organization of biological p
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Conclusions and outlook: models, facts and biocomplexityattempt to distil the main aspects of our learning concerning problems and limitations we realized during this intellectual adventure. One main purpose is to give some clues about the living complexity. We will refer continuously to the whole book, intending to allow the reader to ‘iterate’ on the p
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Supramolecular structure and enzyme catalysis: the groundplan of living cellsbilities in the autonomous dynamics of biological processes in a far from thermodynamic equilibrium domain give rise to self-organized behaviour. This behaviour could synchronize collective or systemic properties in cells such as metabolic fluxes (Cortassa .,1994a; Cortassa and Aon, 1994b). Redirect
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Spatio-temporal regulation of glycosis and oxidative phosphorylation , membranes – or functional ones such as the alternating association–dissociation of enzymes to subcellular structures (e.g. mitochondria, cytoskeleton) with different kinetic properties in each state. Two novel regulatory mechanisms at the level of the cytoskeleton may add a new dimension to the . p
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Book 1997 biological processesoccuring at the cellular level. Dynamic Biological Organization givesexciting insights into the experimental and theoretical applicationsof modern scientific paradigms to fundamental biological processes.
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mphasizing biological processesoccuring at the cellular level. Dynamic Biological Organization givesexciting insights into the experimental and theoretical applicationsof modern scientific paradigms to fundamental biological processes.978-94-010-6462-0978-94-011-5828-2
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