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The Plant Cell, ISSN 1040-4651, 2/2012, Volume 24, Issue 2, pp. 762 - 777
Journal Article
Journal Article
Microbial Cell Factories, ISSN 1475-2859, 2017, Volume 16, Issue 1, pp. 109 - 14
Background: Acetic acid bacteria (AAB) are widely applied in food, bioengineering and medicine fields. However, the acid stress at low pH conditions limits... 
Working mechanisms | Aspartic acid | Glutamate | Acid stress resistance enhancement | Acetobacter pasteurianus | BACTERIA | ESCHERICHIA-COLI | INTRACELLULAR PH | ACETIC-ACID | GLUCONOBACTER-OXYDANS | GENOME SEQUENCE | PROFILE | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | AMINO-ACIDS | FERMENTATION | OPERON | Glutamic Acid - pharmacology | Oxidation-Reduction | Acetobacter - drug effects | Fermentation | Acetobacter - metabolism | Proteomics | Stress, Physiological - drug effects | Acetobacter - growth & development | NADP | Acetic Acid - metabolism | Fatty Acids - metabolism | Pentose Phosphate Pathway | Aspartic Acid - pharmacology | Glutathione | Phosphates | Ammonia | Drug resistance in microorganisms | Unsaturated fatty acids | Aspartate | Bacteria | Nucleic acids | Acetic acid | Sugars | Monosaccharides | Bioengineering | Salts | Cytotoxicity | Glucose | Vinegar | Osmotic stress | Proteins | Cell growth | Synthesis | Fluidity | Acid resistance | Damage | Deoxyribonucleic acid--DNA | Stress concentration | Stability | Ethanol | Cider | Nutrient concentrations | Metabolism | Survival | Fatty acids | Equilibrium | Viability | Glutamic acid | Oxidative stress | Amino acids | Optimization | Biological effects | E coli | Phosphate | Cell cycle | Acetic acid bacteria | Hydrogen ion concentration | Food | Pentose phosphate | Cell survival | Cloning | Acid production | Nitrogen | Medicine | Deamination | Pentose phosphate pathway | Intracellular | Integrity
Journal Article
Journal Article
Amino Acids, ISSN 0939-4451, 9/2017, Volume 49, Issue 9, pp. 1521 - 1533
Journal Article
PLoS ONE, ISSN 1932-6203, 06/2014, Volume 9, Issue 6, p. e100010
Journal Article
PLoS ONE, ISSN 1932-6203, 01/2010, Volume 5, Issue 1, p. e8550
Ciliary neurotrophic factor (CNTF) is a potent neuroprotective cytokine in different animal models of glutamate-induced excitotoxicity, although its action... 
FACTOR-RECEPTOR | QUINOLINIC ACID | CNTF | IN-VIVO | BIOLOGY | CENTRAL-NERVOUS-SYSTEM | REACTIVE GLIOSIS | GENE-TRANSFER | HUNTINGTONS-DISEASE | RAT MODEL | RAFT MICRODOMAINS | Ciliary Neurotrophic Factor - physiology | Rats | Evoked Potentials - physiology | Corpus Striatum - cytology | Corpus Striatum - metabolism | Evoked Potentials - drug effects | Quinolinic Acid - pharmacology | Amino Acid Transport System X-AG - antagonists & inhibitors | Animals | Corpus Striatum - drug effects | Glutamic Acid - metabolism | Neurons - metabolism | In Vitro Techniques | Neurons - drug effects | Aspartic Acid - pharmacology | Nervous system diseases | Cytokines | Neurons | Amino acids | Ciliary neurotrophic factor | Comparative analysis | Glutamate | Huntingtons disease | Neuroprotection | Animal models | Glutamic acid receptors | Recovery | Neuronal-glial interactions | Overflow | Neurotoxicity | Neurodegeneration | Rodents | Neostriatum | Trends | Quinolinic acid | Excitation | Localization | Enzymes | Dopamine | Neurodegenerative diseases | Medical treatment | Cortex | Data processing | Spiny neurons | Neurological diseases | Brain research | Excitotoxicity | Cocaine | Glutamatergic transmission | Alzheimers disease | Neurons and Cognition | Evoked Potentials | Neurobiology | Amino Acid Transport System X-AG | Aspartic Acid | Quinolinic Acid | Glutamic Acid | Life Sciences | Ciliary Neurotrophic Factor | Corpus Striatum
Journal Article
Journal Article