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Titlebook: Cellular Ecophysiology of Microbe: Hydrocarbon and Lipid Interactions; Tino Krell Living reference work 2020Latest edition

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,Organisationsveränderung für Mobilisierung,hat generates biomass, energy, and intermediates for macromolecules. Its importance is not limited to biosynthetic pathways: the oxidation of carbohydrates (via pyruvate), fatty acids (by the β-oxidation cycle), or aromatics (by various pathways) all produce acetyl-CoA as an end point of catabolism.
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https://doi.org/10.1007/978-3-322-97757-1y coding elements of their sequences. Some of the bases in the DNA and RNA and the majority of the amino acids in the protein can incorporate new functional groups through a covalent addition. By means of these modifications, the genetically encoded functions of active proteins or the expression pat
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Unternehmensführung & Controlling along with other classes of organics. Concentrations are small, in the μg L. range and generally below detection. The organisms are sometimes mischaracterized as high-affinity organisms due to small Michaelis constants, and measured affinities for these and other substrates of oligobacteria are muc
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https://doi.org/10.1007/978-3-322-97781-6id bilayer that provides an appropriate matrix for membrane proteins involved in many different cellular processes. Membrane lipid composition can change in response to different environmental challenges such as the presence of toxic compounds (e.g., aromatic hydrocarbons). The changes in membrane f
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https://doi.org/10.1007/978-3-322-97781-6 it occurs in many biological processes of prokaryotes and eukaryotes. The most common methylations occur on the amino groups of lysine and arginine side chains providing them with hydrophobic and steric properties that affect the way they behave and recognize other proteins and nucleic acids. Methy
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