Michael Broberg Palmgren
Professor
Section for Transport Biology
Thorvaldsensvej 40
1871 Frederiksberg C
- Published
Protein kinase PKS5 inhibits the plasma membrane H+-ATPase by preventing interaction with 14-3-3 protein
Fuglsang, Anja Thoe, Guo, Y., Cuin, T. A., Qiu, Q., Song, C., Kristiansen, K. A., Bych, K., Schulz, Alexander, Shabala, S., Schumaker, K. S., Palmgren, Michael & Zhu, J., 2007. 1 p.Research output: Contribution to conference › Poster › Research
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Protein phosphatase 2A regulatory subunit A and LRR protein kinase are plasma membrane H+-ATPase interacting proteins
Aggernæs, G. T., Søndergaard, T., Palmgren, Michael & Fuglsang, Anja Thoe, 2004, Programme, abstracts, list of participants. p. 145 1 p.Research output: Chapter in Book/Report/Conference proceeding › Conference abstract in proceedings › Research
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Protein phosphatase 2A scaffolding subunit A interacts with plasma membrane H+-ATPase C-terminus in the same region as 14-3-3 protein
Fuglsang, Anja Thoe, Aggernæs, G. T., Cui, N. & Palmgren, Michael, 2006, In: Physiologia Plantarum : An International Journal for Plant Biology. 128, 2, p. 334-340 7 p.Research output: Contribution to journal › Journal article › Research › peer-review
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Proteolytic activation of the plant plasma membrane H+-ATPase by removal of a terminal segment
Palmgren, Michael, Larsson, C. & Sommarin, M., 1990, In: Journal of Biological Chemistry. 265, 23, p. 13423-13426 4 p.Research output: Contribution to journal › Journal article › Research › peer-review
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Proton and calcium pumping P-type ATPases and their regulation of plant responses to the environment: [incl. Corrigendum]
Fuglsang, Anja Thoe & Palmgren, Michael, 2021, In: Plant Physiology. 187, 4, p. 1856-1875Research output: Contribution to journal › Journal article › Research › peer-review
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Proton gradients and plant growth: role of the plasmamembrane H+-ATPase
Palmgren, Michael, 1998, In: Advances in Botanical Research. 28, p. 1-70 70 p.Research output: Contribution to journal › Journal article › Research › peer-review
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Protons and how they are transported by proton pumps
Buch-Pedersen, M. J., Pedersen, B. P., Veierskov, Bjarke, Nissen, P. & Palmgren, Michael, 2008, In: Pflügers Archiv: European Journal of Physiology. 457, 3, p. 573-579 7 p.Research output: Contribution to journal › Journal article › Research › peer-review
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Pseudohyphal growth in Saccharomyces cerevisiae involves protein kinase-regulated lipid flippases
Frøsig, M. M., Costa, S. R., Liesche, J., Østerberg, J. T., Hanisch, S., Kjeldgaard-Nintemann, Sebastian J, Sørensen, Helle, Palmgren, Michael, Pomorski, Thomas Guenther & Lopez Marques, Rosa Laura, 6 Aug 2020, In: Journal of Cell Science. 133, 15, 235994.Research output: Contribution to journal › Journal article › Research › peer-review
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Pumping with plant P-type ATPases
Palmgren, Michael & Harper, J. F., 1999, In: Journal of Experimental Botany. 50, p. 883-893 11 p.Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Purification of a histidine-tagged plant plasma membrane H+-ATPase expressed in yeast
Lanfermeijer, F. C., Venema, K. & Palmgren, Michael, 1998, In: Protein Expression and Purification. 12, p. 29-37 9 p.Research output: Contribution to journal › Journal article › Research › peer-review
ID: 4235147
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Lipid-conjugated fluorescent pH sensors for monitoring pH changes in reconstituted membrane systems
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Barley HvHMA1 is a heavy metal pump involved in mobilizing organellar Zn and Cu and plays a role in metal loading into grains
Research output: Contribution to journal › Journal article › Research › peer-review
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A putative plant aminophospholipid flippase, the arabidopsis P4 ATPase ALA1, localizes to the plasma membrane following association with a ß-subunit
Research output: Contribution to journal › Journal article › Research › peer-review
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