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Titlebook: Biogenesis of Fatty Acids, Lipids and Membranes; Otto Geiger Reference work 2019 Springer Nature Switzerland AG 2019 isoprenoid synthesis.

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Lipid Intermediates in Bacterial Peptidoglycan Biosynthesis the target for a great number of antibacterials of different natures, e.g., antibiotics such as β-lactams and vancomycin, host immune system antimicrobial peptides, and bacteriocins. Peptidoglycan synthesis requires the translocation, across the plasma membrane, of the polymer building block, a dis
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as a Model Organism for Wax Ester Accumulation in Bacteria utilized by all domains of life to serve a wide variety of functions. The model bacterium . has become an ideal model organism for studying wax ester biosynthesis, as it naturally accumulates wax esters in addition to having many other desirable features. While the pathway of wax ester biosynthesis
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Vitamin Formation from Fatty Acid Precursorsvo synthesis of these vitamins depends on the production of fatty acid precursors and has been most extensively characterized in . and . species. The octanoyl-acyl carrier protein precursor for lipoic acid is synthesized in reactions catalyzed by the fatty acid biosynthesis (Fab) enzymes. The octano
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Functional Roles of Non-membrane Lipids in Bacterial Signalingingdom communication (i.e., between prokaryotes and eukaryotes). Most of these lipidic signals participate in quorum-sensing regulation, a process that is dependent on cell density and enables a coordinated response within the population. The number and variety of bacterial non-membrane lipids that
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Metabolism and Roles of Sphingolipids in Yeast ellular processes that are implicated in various human diseases. Most bioactive sphingolipids also serve as intermediate products of the sphingolipid metabolic network. It is thus critical to understand sphingolipid metabolic pathways in order to dissect sphingolipid function at single-species level
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Mental Illness and Migrants in Europehway acetogenic bacteria possess is the linear, two-branched reductive acetyl-CoA pathway (Wood-Ljungdahl pathway), which they not only use to fix CO. + H. and/or CO to acetyl-CoA and further to acetate but also for redox balancing when growing on other carbon substrates. Reduction of CO. to acetate
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