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indoleacetic acids - metabolism (165) 165
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The Plant Journal, ISSN 0960-7412, 05/2012, Volume 70, Issue 3, pp. 492 - 500
Summary Previous studies have demonstrated that auxin (indole‐3‐acetic acid) and nitric oxide (NO) are plant growth regulators that coordinate several plant... 
S‐nitrosylation | Arabidopsis thaliana | nitric oxide | TIR1 receptor | auxin | root growth | Arabidopsis thaliana | S-nitrosylation | TRANSFORMATION | UBIQUITIN LIGASE | GLUTATHIONYLATION | BOX PROTEIN TIR1 | PLANT SCIENCES | MUTANTS | NITROSOTHIOLS | PLANTS | AUX/IAA PROTEINS | ROOT DEVELOPMENT | EXPRESSION | Arabidopsis - physiology | Arabidopsis - growth & development | Transcriptional Activation | Molecular Sequence Data | Plant Roots - genetics | Seedlings - genetics | Nitric Oxide - analysis | Seedlings - growth & development | Plant Roots - drug effects | Arabidopsis Proteins - metabolism | Plant Roots - physiology | Biological Transport | Protein Processing, Post-Translational - drug effects | Proteolysis | Plants, Genetically Modified | Cysteine - metabolism | Plant Roots - growth & development | Amino Acid Sequence | Arabidopsis Proteins - genetics | Gene Expression | Arabidopsis - drug effects | Indoleacetic Acids - metabolism | F-Box Proteins - metabolism | Models, Molecular | Receptors, Cell Surface - metabolism | RNA, Plant - genetics | Seedlings - drug effects | Arabidopsis - genetics | Gene Expression Regulation, Plant - drug effects | Sequence Alignment | Seedlings - physiology | Signal Transduction - drug effects | Nitric Oxide - metabolism | Plant Growth Regulators - metabolism | F-Box Proteins - genetics | Receptors, Cell Surface - genetics | Post-translational modification | Nitrogen oxide | Cysteine | Auxin | Architecture | Arabidopsis | Developmental biology | Genes | Gene expression | Plant hormones | Organic acids | Proteins | Nitric oxide | Physiological aspects | Acetic acid | Plant biology | Signal transduction | Phytochemicals | Flowers & plants
Journal Article
Plant Molecular Biology, ISSN 0167-4412, 12/2011, Volume 77, Issue 6, pp. 619 - 629
Journal Article
Russian Journal of Plant Physiology, ISSN 1021-4437, 1/2011, Volume 58, Issue 1, pp. 149 - 156
The full-length cDNA encoding a TRANSPORT INHIBITOR RESPONSE 1 (TIR1) protein, designated NtTIR1, was isolated for the first time from Nicotiana tabacum by the... 
Life Sciences | Plant Physiology | TIR1 | Nicotiana tabacum | Plant Sciences | RACE | SWISS-MODEL WORKSPACE | BOX PROTEIN TIR1 | PLANT DEVELOPMENT | ANTHER DEHISCENCE | AUXIN RECEPTOR | TOBACCO | PLANT SCIENCES | ROLB | ELONGATION | EXPRESSION | Arabidopsis thaliana | Genetic aspects | Analysis | Cloning
Journal Article
Biochemical Journal, ISSN 0264-6021, 05/2015, Volume 467, Issue 3, pp. 365 - 386
In the last decade, the ubiquitin-proteasome system has emerged as a valid target for the development of novel therapeutics. E3 ubiquitin ligases are... 
Ubiquitin | Ubiquitination | Small molecule | Structure | Structure-based design | Assembly | small molecule | ANAPHASE-PROMOTING COMPLEX | SOCS-BOX | BIOCHEMISTRY & MOLECULAR BIOLOGY | F-BOX PROTEINS | KAPPA-B-ALPHA | structure | structure-based design | ubiquitin | CANCER-THERAPY | ubiquitination | COP9 SIGNALOSOME | assembly | TUMOR-SUPPRESSOR PROTEIN | SUBSTRATE-ASSISTED INHIBITION | CELL-CYCLE | PROTEASOME SYSTEM | Protein Structure, Tertiary | Protein Subunits | Cullin Proteins - antagonists & inhibitors | Proteasome Inhibitors - pharmacology | Humans | Models, Molecular | Proteasome Inhibitors - chemistry | Drug Discovery - methods | Cullin Proteins - chemistry | Cullin Proteins - genetics | Drug Design | Protein Structure, Quaternary | Molecular Structure | MEL26, maternal effect lethal 26 | HECT, homologous with E6-associated protein C-terminus | DCAF, DDB1–Cul4A-associated factor | CPH, conserved within Cul7, PARC and HERC2 | CSA, Cockayne syndrome A | NAE, NEDD8-activating enzyme | Rbx1, RING-box protein 1 | PPI, protein–protein interaction | C, anaphase-promoting complex | SV5, simian virus 5 | Fbxw, F-box | Skp2, S-phase kinase-associated protein 2 | IAA, indole-3-acetic acid | Cpd, compound | Fbw | SMER3, small-molecule enhancer of rapamycin 3 | mTOR, mammalian target of rapamycin | HERC2, HECT domain- and RLD (regulator of chromosome condensation 1 protein-like domain) domain-containing E3 ubiquitin protein ligase 2 | IκB, inhibitor of NF-κB | UPS, ubiquitin–proteasome system | Nrf2, nuclear factor-erythroid 2-related factor 2 | Protac, proteolysis-targeting chimaeric molecule | WD repeat-containing protein | ZIM (zinc finger expressed in inflorescence) domain protein 1 | NF-κB, nuclear factor κB | leucine-rich motif-containing protein | CTD, C-terminal domain | Ub, ubiquitin | Vif, virion infectivity factor | NTD, N-terminal domain | GHR, growth hormone receptor | CRBN, cereblon | HIF-1α, hypoxia-inducible factor 1α | SH2, Src homology 2 | BP, β-propeller | UBL, ubiquitin-like protein | FP, fluorescence polarization | Cks1, cyclin-dependent protein kinase regulatory subunit 1 | CSN, COP9 (constitutive photomorphogenesis 9) signalosome complex | ITC, isothermal titration calorimetry | RING, really interesting new gene | Ubc12, ubiquitin-conjugating enzyme 12 | KLHL, Kelch-like protein | Review | VPRBP, Vpr-binding protein | SCF, Skp1–Cdc53–F-box Cdc4 | POZ, pox virus and zinc finger | JAZ1, jasmonate | Keap1, Kelch-like enoyl-CoA hydratase-associated protein 1 | PARC, p53-associated parkin-like cytoplasmic protein | DDB, damage-specific DNA-binding protein | JA-Ile, jasmonoyl-isoleucine | Fbxl, F-box | MATH, meprin and TRAF (tumour necrosis factor receptor-associated factor) homology | CRL, Cullin–RING E3 ubiquitin ligase | other domain-containing protein | COI1, coronatine-insensitive protein 1 | EloBC, ElonginB–ElonginC complex | broad complex | VHL, von Hippel–Lindau | Vpr, viral protein R | Aux, auxin | STAT, signal transducer and activator of transcription | CAND1, Cullin-associated NEDD8-dissociated protein 1 | Fbxo, F-box | TIR1, transport inhibitor response 1 | CBFβ, core binding factor β | BCR, BTB–Cul3–Rbx1 | cyclosome | SOCS, suppressor of cytokine signalling | NEDD, neural-precursor-cell-expressed developmentally down-regulated | BTB, bric-a-brac | APC | Cdc, cell division cycle | Cul, Cullin | SPOP, speckle-type POZ protein | β-TrCP, β-transducin repeat-containing protein | tramtrack | ASB, ankyrin repeat and SOCS-box
Journal Article
Journal of Experimental Botany, ISSN 0022-0957, 05/2019, Volume 70, Issue 10, pp. 2609 - 2614
Journal Article
FEBS Letters, ISSN 0014-5793, 06/2012, Volume 586, Issue 12, pp. 1742 - 1747
Journal Article
New Phytologist, ISSN 0028-646X, 12/2013, Volume 200, Issue 4, pp. 1034 - 1048
The mode of action of auxin is based on its non-uniform distribution within tissues and organs. Despite the wide use of several auxin analogues in research and... 
Full papers | Endocytosis | Ethanol | Root growth | Cell lines | Auxins | Plants | Indoles | Chemical suspensions | Insulin antibodies | Seedlings | auxin analogues | indole‐3‐acetic acid (IAA) | naphthalene‐1‐acetic acid (NAA) | indole‐3‐butyric acid (IBA) | auxin signalling | 2,4‐dichlorophenoxyacetic acid (2,4‐D) | auxin transport | Naphthalene-1-acetic acid (NAA) | Auxin transport | Auxin signalling | Indole-3-butyric acid (IBA) | Indole-3-acetic acid (IAA) | 2,4-dichlorophenoxyacetic acid (2,4-D) | Auxin analogues | BOX PROTEIN TIR1 | indole-3-acetic acid (IAA) | FAMILY | PLANT SCIENCES | CELL-DIVISION | TRANSPORT | EFFLUX | indole-3-butyric acid (IBA) | naphthalene-1-acetic acid (NAA) | 2,4-DICHLOROPHENOXYACETIC ACID | ARABIDOPSIS | PLANT-GROWTH | BINDING | INDOLE-3-BUTYRIC ACID | Arabidopsis Proteins - genetics | Arabidopsis - drug effects | Plant Cells - metabolism | Biological Transport, Active - drug effects | Endocytosis - drug effects | Seedlings - drug effects | Mutation - genetics | Promoter Regions, Genetic - genetics | Cell Division - drug effects | Seedlings - growth & development | Arabidopsis - metabolism | Plant Roots - drug effects | Tobacco - cytology | Arabidopsis - genetics | Arabidopsis Proteins - metabolism | Gene Expression Regulation, Plant - drug effects | Indoleacetic Acids - pharmacology | Plant Cells - drug effects | Cell Membrane - metabolism | Endocytosis - genetics | Plant Roots - growth & development | Cell Membrane - drug effects | Suspensions | Botanik | Botany
Journal Article
BMC Plant Biology, ISSN 1471-2229, 03/2014, Volume 14, Issue 1, pp. 68 - 68
Background: Phytophthora cinnamomi is a devastating pathogen worldwide and phosphite (Phi), an analogue of phosphate (Pi) is highly effective in the control of... 
Abscisic acid | Indole-3-acetic acid (IAA) | TIBA | Phosphate starvation response (PSR) | Ubiquitin proteasome pathway (UPP) | Ubiquitin | ARABIDOPSIS-THALIANA | DEFENSE RESPONSES | 26S PROTEASOME SUBUNIT | BOX PROTEIN TIR1 | proteasome pathway (UPP) | PLANT-DISEASE | PLANT SCIENCES | EUCALYPTUS-MARGINATA | PHOSPHORUS-ACID | ROOT-SYSTEM ARCHITECTURE | ABSCISIC-ACID | STARVATION RESPONSES | Lupinus - microbiology | Genes, Plant | Plant Roots - genetics | Plant Diseases - microbiology | Disease Resistance - immunology | Protein Subunits - metabolism | Plant Roots - drug effects | Arabidopsis Proteins - metabolism | Lupinus - drug effects | Plants, Genetically Modified | Plant Diseases - genetics | Biological Transport - drug effects | Phosphates - pharmacology | Arabidopsis Proteins - genetics | Arabidopsis - drug effects | Phytophthora - drug effects | Indoleacetic Acids - metabolism | Phytophthora - physiology | Signal Transduction - genetics | Mutation - genetics | Arabidopsis - metabolism | Arabidopsis - genetics | Phosphites - pharmacology | Arabidopsis - microbiology | Gene Expression Regulation, Plant - drug effects | Signal Transduction - drug effects | Lupinus - metabolism | Triiodobenzoic Acids | Phosphates - deficiency | Proteasome Endopeptidase Complex - metabolism | Biological research | Plant defenses | Auxin | Cellular signal transduction | Research | Properties | Biology, Experimental | Acetic acid | Analysis | Organic acids | Proteins | Studies | Polymerase chain reaction | Design | Data analysis | Lysergic acid diethylamide--LSD | Software | Life sciences | Digital cameras | Gene expression
Journal Article