Journal of Integrative Plant Biology · 2018 · 10 citations · 11 references
Plant Molecular BiologyGfp-yuc1 FusionBiosynthesisEngineeringCellular EnzymologyBiochemistryNatural SciencesEscrt PathwayMolecular BiologyPlant BiochemistryAuxin BiosynthesisCellular BiochemistryGene ExpressionEscrt‐dependent Vacuolar SortingCell BiologyPlant Physiology
YUC flavin monooxygenases catalyze the rate-limiting step of auxin biosynthesis. Here we report the vacuolar targeting and degradation of GFP-YUC1. GFP-YUC1 fusion expressed in Arabidopsis protoplasts or transgenic plants was primarily localized in vacuoles. Surprisingly, we established that GFP-YUC1, a soluble protein, was sorted to vacuoles through the ESCRT pathway, which has long been recognized for sorting and targeting integral membrane proteins. We further show that GFP-YUC1 was ubiquitinated and in this form GFP-YUC1 was targeted for degradation, a process that was also stimulated by elevated auxin levels. Our findings revealed a molecular mechanism of GFP-YUC1 degradation and demonstrate that the ESCRT pathway can recognize both soluble and integral membrane proteins as cargoes.
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A Role for Flavin Monooxygenase-Like Enzymes in Auxin Biosynthesis
Yunde Zhao, S. Christensen, Christian Fankhauser et al. · Science · 2001 · 1.2K citations
Biology, Biosynthesis, Biochemistry +12
Auxin Overproduction in Shoots Cannot Rescue Auxin Deficiencies in Arabidopsis Roots
Qingguo Chen, Xinhua Dai, Henrique C. DePaoli et al. · Plant and Cell Physiology · 2014 · 279 citations · Full text
Botany, Genetics, Molecular Genetics +16