Microbial transport
Autor: | Wil N. Konings |
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Přispěvatelé: | GBB Microbiology Cluster |
Jazyk: | angličtina |
Rok vydání: | 2006 |
Předmět: |
Hot Temperature
membrane transport Microbial metabolism LACTIC-ACID BACTERIA Microbiology survival Lactic Acid Bacteria Anti-Infective Agents multidrug resistance MULTIDRUG TRANSPORTERS Lactic Acid LACTOCOCCUS-LACTIS Molecular Biology Ion transporter extremophiles Ion Transport Bacteria biology LACTOBACILLUS-BREVIS Chemiosmosis Cell Membrane Membrane Transport Proteins 2-CYLINDER ENGINE MECHANISM Biological Transport Drug Resistance Microbial ANTIBIOTIC-RESISTANCE General Medicine Metabolism Permeation Membrane transport biology.organism_classification Adaptation Physiological Archaea Lipids STREPTOCOCCUS-CREMORIS SOLUTE TRANSPORT PROTON-MOTIVE FORCE Membrane Biochemistry Biophysics metabolic energy generation Energy Metabolism DEPENDENT DRUG EXTRUSION |
Zdroj: | Antonie Van Leeuwenhoek: International Journal of General and Molecular Microbiology, 90(4), 325-342. SPRINGER |
ISSN: | 0003-6072 |
DOI: | 10.1007/s10482-006-9089-3 |
Popis: | The cytoplasmic membrane of bacteria is the matrix for metabolic energy transducing processes such as proton motive force generation and solute transport. Passive permeation of protons across the cytoplasmic membrane is a crucial determinant in the proton motive generating capacity of the organisms. Adaptations of the membrane composition are needed to restrict the proton permeation rates especially at higher temperatures. Thermophilic bacteria cannot sufficiently restrict this proton permeation at their growth temperature and have to rely on the much lower permeation of Na + to generate a sodium motive force for driving metabolic energy-dependent membrane processes. Specific transport systems mediate passage across the membrane at physiological rates of all compounds needed for growth and metabolism and of all end products of metabolism. Some of transport systems, the secondary transporters, transduce one form of electrochemical energy into another form. These transporters can play crucial roles in the generation of metabolic energy. This is especially so in anaerobes such as Lactic Acid Bacteria which live under energy-limited conditions. Several transport systems are specifically aimed at the generation of metabolic energy during periods of energy-limitation. In their natural environment bacteria are also often exposed to cytotoxic compounds, including antibiotics. Many bacteria can respond to this live-threatening condition by overexpressing powerful drug-extruding multidrug resistance systems. |
Databáze: | OpenAIRE |
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