Subcellular localization and expression of multiple tomato gamma-aminobutyrate transaminases that utilize both pyruvate and glyoxylate.
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Role of plant glyoxylate reductases during stress: a hypothesisHow and why does tomato accumulate a large amount of GABA in the fruit?GABA transaminases from Saccharomyces cerevisiae and Arabidopsis thaliana complement function in cytosol and mitochondria.Improvement of whole-cell transamination with Saccharomyces cerevisiae using metabolic engineering and cell pre-adaptation.Closing the loop on the GABA shunt in plants: are GABA metabolism and signaling entwined?Biocatalytic potential of vanillin aminotransferase from Capsicum chinense.Fiat lux! Phylogeny and bioinformatics shed light on GABA functions in plantsOff-the-Vine Ripening of Tomato Fruit Causes Alteration in the Primary Metabolite Composition.Evidence for GABA-Induced Systemic GABA Accumulation in Arabidopsis upon WoundingInsect Herbivory-Elicited GABA Accumulation in Plants is a Wound-Induced, Direct, Systemic, and Jasmonate-Independent Defense Response.Virus-induced gene silencing reveals control of reactive oxygen species accumulation and salt tolerance in tomato by γ-aminobutyric acid metabolic pathway.Diurnal oscillations of metabolite abundances and gene analysis provide new insights into central metabolic processes of the brown alga Ectocarpus siliculosus.Inhibition of aconitase by nitric oxide leads to induction of the alternative oxidase and to a shift of metabolism towards biosynthesis of amino acids.The ALDH21 gene found in lower plants and some vascular plants codes for a NADP+ -dependent succinic semialdehyde dehydrogenase.Changes in plastid proteome and structure in arbuscular mycorrhizal roots display a nutrient starvation signature.Reduced levels of NADH-dependent glutamate dehydrogenase decrease the glutamate content of ripe tomato fruit but have no effect on green fruit or leaves.Alternative oxidase isoforms are differentially activated by tricarboxylic acid cycle intermediates.Activating glutamate decarboxylase activity by removing the autoinhibitory domain leads to hyper γ-aminobutyric acid (GABA) accumulation in tomato fruit.Glutamic acid decarboxylase gene disruption reveals signalling pathway(s) governing complex morphogenic and metabolic events in Trichoderma atroviride.Revealing the Structural Basis of Promiscuous Amine Transaminase Activity
P2860
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P2860
Subcellular localization and expression of multiple tomato gamma-aminobutyrate transaminases that utilize both pyruvate and glyoxylate.
description
2009 nî lūn-bûn
@nan
2009 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
2009 թվականի մայիսին հրատարակված գիտական հոդված
@hy
2009年の論文
@ja
2009年論文
@yue
2009年論文
@zh-hant
2009年論文
@zh-hk
2009年論文
@zh-mo
2009年論文
@zh-tw
2009年论文
@wuu
name
Subcellular localization and e ...... both pyruvate and glyoxylate.
@ast
Subcellular localization and e ...... both pyruvate and glyoxylate.
@en
Subcellular localization and e ...... both pyruvate and glyoxylate.
@nl
type
label
Subcellular localization and e ...... both pyruvate and glyoxylate.
@ast
Subcellular localization and e ...... both pyruvate and glyoxylate.
@en
Subcellular localization and e ...... both pyruvate and glyoxylate.
@nl
prefLabel
Subcellular localization and e ...... both pyruvate and glyoxylate.
@ast
Subcellular localization and e ...... both pyruvate and glyoxylate.
@en
Subcellular localization and e ...... both pyruvate and glyoxylate.
@nl
P2093
P2860
P356
P1476
Subcellular localization and e ...... both pyruvate and glyoxylate.
@en
P2093
Barry J Shelp
Owen R Van Cauwenberghe
Robert T Mullen
Rosa Di Leo
Shawn M Clark
P2860
P304
P356
10.1093/JXB/ERP161
P577
2009-05-21T00:00:00Z