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Titlebook: Biogenesis of Fatty Acids, Lipids and Membranes; Otto Geiger Living reference work 20200th edition isoprenoid synthesis.phospholipid.sphi

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Formation of Bacterial Glycerol-Based Membrane Lipids: Pathways, Enzymes, and Reactions,heses and functionalities of individual membrane lipids have mainly been studied in this organism. However, in other bacteria, additional and alternative glycerol-based membrane lipids are found, and in many cases neither their biosyntheses nor their functionalities are understood. Some Gram-negativ
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Formation of Fatty Acids,de chains of membrane lipids are isoprenoids. Fatty acid biosynthesis is catalyzed in most bacteria by a group of highly conserved proteins known as the type II fatty acid synthase (FAS II) system. A key protein in this system is the acyl carrier protein (ACP) which acts as carrier of growing acyl c
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Functional Roles of Individual Membrane Phospholipids in , and ,,ayer that provides the barrier function and defines the limits of cells and organelles. The lipid bilayer provides the solvent for integral membrane proteins and the scaffold with which peripheral membrane proteins associate. The properties of the lipid bilayer are defined by the collective properti
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Functional Roles of Non-membrane Lipids in Bacterial Signaling,ingdom 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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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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