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Journal Article
The Plant Cell, ISSN 1040-4651, 11/2010, Volume 22, Issue 11, pp. 3845 - 3863
The tight association between nitrogen status and pathogenesis has been broadly documented in plant-pathogen interactions. However, the interface between... 
Pathogens | Leaves | Disease resistance | Plant diseases | Chloroplasts | Homeostasis | Amino acids | Infections | Plants | Plant cells | OXYGEN GENE NETWORK | PATHOGEN INTERACTIONS | BIOCHEMISTRY & MOLECULAR BIOLOGY | SYSTEMIC ACQUIRED-RESISTANCE | CELL-DEATH | NEGATIVE REGULATOR | PLANT SCIENCES | CELL BIOLOGY | DEFICIENT MUTANTS | DOWNY MILDEW RESISTANCE | PLANT DEFENSE | GLUTAMINE-SYNTHETASE | DISEASE RESISTANCE | Amino Acid Transport Systems, Basic - genetics | Reactive Oxygen Species - metabolism | Salicylic Acid - metabolism | Plant Diseases - immunology | Immunity, Innate - genetics | Arabidopsis - immunology | Glutamine - metabolism | Recombinant Fusion Proteins - metabolism | Gene Knockdown Techniques | Arabidopsis Proteins - metabolism | Amino Acids - metabolism | Microarray Analysis | Plants, Genetically Modified | Gene Expression Regulation, Plant | Plant Diseases - genetics | Arabidopsis Proteins - genetics | Nitrogen - metabolism | Oxidation-Reduction | Reactive Nitrogen Species - metabolism | Arabidopsis - genetics | Immunity, Innate - immunology | Arabidopsis - anatomy & histology | Recombinant Fusion Proteins - genetics | Amino Acid Transport Systems, Basic - metabolism | Arabidopsis thaliana | Salicylic acid | Plant immunology | Physiological aspects | Oxidation-reduction reaction | Research | Properties
Journal Article
Journal Article
Amino acids, ISSN 0939-4451, 1991
Journal
Chemistry – A European Journal, ISSN 0947-6539, 12/2017, Volume 23, Issue 70, pp. 17697 - 17700
A generally applicable Pd‐catalyzed protocol for the β‐C(sp3)−H arylation of propionic acid and related α‐branched aliphatic acids is reported. Enabled by the... 
palladium | C−H activation | carboxylic acids | arylation | propionic acid | FUNCTIONALIZATION | IOPHENOXIC ACID | C-H activation | AMINO-ACIDS | DERIVATIVES | CHEMISTRY, MULTIDISCIPLINARY | C-H BONDS
Journal Article
Journal Article
Journal Article
Journal Article
Organic Letters, ISSN 1523-7060, 12/2015, Volume 17, Issue 24, pp. 5966 - 5969
The Pd­(II)-catalyzed arylation of unactivated β-C­(sp3)–H bonds in α-hydroxy aliphatic acid with a variety of aryl iodides was developed utilizing an amino... 
FUNCTIONALIZATION | C(SP)-H BONDS | ACTIVATION | U-SHAPED TEMPLATE | OLEFINATION | ALKYLATION | CHEMISTRY, ORGANIC | IODINATION | AUXILIARY | C-H BONDS | PALLADIUM ACETATE | Magnetic Resonance Spectroscopy | Amino Acids - chemistry | Molecular Structure | Catalysis | Hydrocarbons, Iodinated - chemistry | Hydroxy Acids - chemistry | Palladium - chemistry
Journal Article
Amino Acids, ISSN 0939-4451, 9/2017, Volume 49, Issue 9, pp. 1521 - 1533
More than half a century ago researchers thought that d-amino acids had a minor function compared to l-enantiomers in biological processes. Many evidences have... 
Life Sciences | Biochemistry, general | d -amino acid oxidase | d -Asp | d -amino acid | Analytical Chemistry | d -Ser | Life Sciences, general | Amino acid racemase | Biochemical Engineering | Proteomics | Neurobiology | d-Ser | d-amino acid | d-Asp | d-amino acid oxidase | RACEMASE ACTIVITY | D-Ser | NMDA RECEPTORS | D-Asp | BIOCHEMISTRY & MOLECULAR BIOLOGY | POSTNATAL CHANGES | BACTERIAL | PEPTIDES | D-SERINE | D-amino acid | D-amino acid oxidase | OXIDASE-INHIBITORS | RAT-BRAIN | ALANINE RACEMASE | D-ASPARTIC ACID | Pyridoxal Phosphate - chemistry | Bacteria - chemistry | Stereoisomerism | Humans | Antimicrobial Cationic Peptides - biosynthesis | Glyceraldehyde - chemistry | Pyridoxal Phosphate - metabolism | Plants - chemistry | D-Amino-Acid Oxidase - metabolism | Glyceraldehyde - metabolism | Amphibian Venoms - chemistry | Bacteria - metabolism | D-Amino-Acid Oxidase - chemistry | Antimicrobial Cationic Peptides - chemistry | D-Aspartic Acid - metabolism | Serine - chemistry | Serine - metabolism | Plants - metabolism | Animals | Diet | Amino Acid Isomerases - metabolism | Amino Acid Isomerases - chemistry | D-Aspartic Acid - chemistry | Schiff Bases - chemistry | Schiff Bases - metabolism | Oxidases | Methyl aspartate | Nervous system diseases | Biological products | Epilepsy | Physiological aspects | Schizophrenia | Fermentation | Glutamate | Enantiomers | Brain | Regulators | Dairy products | Mental disorders | Glutamic acid receptors (ionotropic) | Spermatogenesis | Food contamination | Memory | Disorders | Oxidase | Amino acids | Glutamic acid receptors | Hormones | Neurogenesis | Proteins | Learning | Receptors | Microorganisms | Synthesis | Ischemia | Amino acid oxidase | Biodegradation | Enzymes | Plants (botany) | Neurodegenerative diseases | Secretion | D-Serine | D-Amino-acid oxidase | N-Methyl-D-aspartic acid receptors | Metabolism | Mammals | Biological activity | D-Amino acids | Testes
Journal Article
1967, Biological macromolecules, Volume 1, xv, 754
Book
Molecular Imaging and Biology, ISSN 1536-1632, 12/2014, Volume 16, Issue 6, pp. 756 - 764
Journal Article