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glutathione in plants

glutathione in plants Arabidopsis mutants impaired biosynthesis exhibit higher sensitivity towards the glucosinolate hydrolysis product allyl-isothiocyanate A glutathione S-transferase-activated fluorogenic sensor

SKU: 1606296406

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Description

PMID 15601678

glutathione in plants Arabidopsis mutants impaired biosynthesis exhibit higher sensitivity towards the glucosinolate hydrolysis product allyl-isothiocyanate A glutathione S-transferase-activated fluorogenic sensor

doi: 10.1016/j.immuni.2018.11.014 194 LiHvan der LeunAMYofeILublingYGelbard-SolodkinDvan AkkooiACJet al

glutathione in plants Arabidopsis mutants impaired biosynthesis exhibit higher sensitivity towards the glucosinolate hydrolysis product allyl-isothiocyanate A glutathione S-transferase-activated fluorogenic sensor

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glutathione in plants Arabidopsis mutants impaired biosynthesis exhibit higher sensitivity towards the glucosinolate hydrolysis product allyl-isothiocyanate A glutathione S-transferase-activated fluorogenic sensor

Gene-Expression & Regenerative Research Research involving GHK-Cu has investigated its interaction with gene-expression pathways associated with: Cellular-repair and maintenance pathways Tissue-remodeling and regenerative signaling Antioxidant-defense mechanisms Stem-cellrelated signaling pathways Extracellular-matrix maintenance Inflammation-related signaling pathways Studies commonly investigate how GHK-Cu may influence broader regenerative and physiological-resilience pathways associated with healthy-aging and tissue-maintenance research

glutathione in plants Arabidopsis mutants impaired biosynthesis exhibit higher sensitivity towards the glucosinolate hydrolysis product allyl-isothiocyanate A glutathione S-transferase-activated fluorogenic sensor

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glutathione in plants Arabidopsis mutants impaired biosynthesis exhibit higher sensitivity towards the glucosinolate hydrolysis product allyl-isothiocyanate A glutathione S-transferase-activated fluorogenic sensor
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