William C. Plaxton

1986- Plant Science Queen's University, Canada, Kingston, Ontario, Canada 
Molecular Biology
"William Charles Plaxton" OR "William C Plaxton"

DOI: 10.22215/etd/1984-00956


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Kenneth B. Storey grad student 1984 Carleton University (Chemistry Tree)
 (A study of the metabolic adaptations of marine gastropod molluscs to environmental anoxic stress)
Jack Preiss post-doc 1986 Michigan State (Chemistry Tree)


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Gregory Moorhead grad student 1992 Queen's University, Canada (Plant Biology Tree)
Gale G. Bozzo grad student 2004 Queen's University, Canada
Richard Glen Uhrig grad student 2005-2008 Queen's University, Canada (Plant Biology Tree)
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Mehta D, Ghahremani M, Pérez-Fernández M, et al. (2020) Phosphate and phosphite differentially impact the proteome and phosphoproteome of Arabidopsis suspension cell cultures. The Plant Journal : For Cell and Molecular Biology
O'Leary B, Plaxton WC. (2020) Multifaceted functions of post-translational enzyme modifications in the control of plant glycolysis. Current Opinion in Plant Biology. 55: 28-37
Plaxton WC. (2019) Avoiding Proteolysis during the Extraction and Purification of Active Plant Enzymes. Plant & Cell Physiology. 60: 715-724
Willick IR, Plaxton WC, Lolle SJ, et al. (2019) Transcriptional and post-translational upregulation of phosphoenolpyruvate carboxylase in Arabidopsis thaliana (L. Heynh) under cadmium stress Environmental and Experimental Botany. 164: 29-39
Connell MB, Lee MJY, Li J, et al. (2018) Structural and biochemical characterization of citrate binding to AtPPC3, a plant-type phosphoenolpyruvate carboxylase from Arabidopsis thaliana. Journal of Structural Biology
Ghahremani M, Park J, Anderson EM, et al. (2018) Lectin AtGAL1 interacts with high-mannose glycoform of the purple acid phosphatase AtPAP26 secreted by phosphate-starved Arabidopsis. Plant, Cell & Environment
Ghahremani M, Tran H, Biglou SG, et al. (2018) A glycoform of the secreted purple acid phosphatase AtPAP26 co-purifies with a mannose-binding lectin (AtGAL1) upregulated by phosphate-starved Arabidopsis. Plant, Cell & Environment
Fedosejevs ET, Feil R, Lunn JE, et al. (2018) The signal metabolite trehalose-6-phosphate inhibits the sucrolytic activity of sucrose synthase from developing castor beans. Febs Letters. 592: 2525-2532
Dissanayaka DMSB, Plaxton WC, Lambers H, et al. (2018) Molecular mechanisms underpinning phosphorus-use efficiency in rice. Plant, Cell & Environment. 41: 1483-1496
Ting MKY, She YM, Plaxton WC. (2017) Transcript profiling indicates a widespread role for bacterial-type phosphoenolpyruvate carboxylase in malate-accumulating sink tissues. Journal of Experimental Botany. 68: 5857-5869
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