Michael Broberg Palmgren
Professor
Section for Transport Biology
Thorvaldsensvej 40
1871 Frederiksberg C
- Published
Functional expression of plant plasma membrane H+-ATPase in yeast endoplasmic reticulum
Villalba, J. M., Palmgren, Michael, Berberian, G. E., Ferguson, C. & Serrano, R., 1992, In: Journal of Biological Chemistry. 267, 17, p. 12341-12349 9 p.Research output: Contribution to journal › Journal article › Research › peer-review
- Published
A conserved cysteine near the P-site is accessible to cysteine modifications and increases ROS stability in P-type plasma membrane H+-ATPase
Welle, M., Pedersen, J. T., Ravnsborg, T., Hayashi, M., Maaß, S., Becher, D., Jensen, O. N., Stöhr, C. & Palmgren, Michael, 2021, In: Biochemical Journal. 478, 3, p. 619-632Research output: Contribution to journal › Journal article › Research › peer-review
- Published
Measuring H+ pumping and membrane potential formation in sealed membrane vesicle systems
Wielandt, A. G., Palmgren, Michael, Fuglsang, Anja Thoe, Pomorski, Thomas Guenther & Justesen, B. H., 2016, P-Type ATPases: methods and protocols. Bublitz, M. (ed.). Springer, Vol. Part II. p. 171-180 10 p. (Methods in Molecular Biology, Vol. 1377).Research output: Chapter in Book/Report/Conference proceeding › Book chapter › Research › peer-review
- Published
Specific activation of the plant P-type plasma membrane H+-ATPase by lysophospholipids depends on the autoinhibitory N- and C-terminal domains
Wielandt, A. G., Pedersen, J. T., Falhof, J., Kemmer, G. C., Lund, A., Ekberg, K., Fuglsang, Anja Thoe, Pomorski, Thomas Guenther, Buch-Pedersen, M. J. & Palmgren, Michael, 2015, In: The Journal of Biological Chemistry. 290, 26, p. 16281-16291 11 p.Research output: Contribution to journal › Journal article › Research › peer-review
- Published
The Arabidopsis chaperone J3 regulates the plasma membrane H+-ATPase through interaction with the PKS5 Kinase
Yang, Y., Qin, Y., Xie, C., Zhao, F., Zhao, J., Liu, D., Chen, S., Fuglsang, Anja Thoe, Palmgren, Michael, Schumaker, K., Wang Deng, X. & Guo, Y., 2010, In: Plant Cell. 22, 4, p. 1313-1332 20 p.Research output: Contribution to journal › Journal article › Research › peer-review
- Published
P-type ATPases as drug targets: Tools for medicine and science
Yatime, L., Buch-Pedersen, M. J., Musgaard, M., Morth, J. P., Winther, A. L., Pedersen, B. P., Olesen, C., Andersen, J. P., Vilsen, B., Schiøtt, B., Palmgren, Michael, Møller, J. V., Nissen, P. & Fedosova, N., 2009, In: Biochimica et Biophysica Acta - Bioenergetics. 1787, 4, p. 207-220 14 p.Research output: Contribution to journal › Review › Research › peer-review
- Published
Plant Phosphoproteomics: Analysis of Plasma Membrane Transporters by Mass Spectrometry
Ye, J., Rudashevskaya, E., Young, C., Fuglsang, Anja Thoe, Palmgren, Michael & Jensen, O. N., 2008. 1 p.Research output: Contribution to conference › Poster › Research
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Optimization of immobilized metal ion affinity chromatography for phosphopeptide enrichment prior to mass spectrometry
Ye, J., Zhang, X., Rudashevskaya, E., Nawrocki, A., Young, C., Palmgren, Michael, Fuglsang, Anja Thoe & Jensen, O. N., 2008. 1 p.Research output: Contribution to conference › Poster › Research
- Published
Optimization of immobilized metal ion affinity chromatography for phosphopeptide enrichment prior to mass spectrometry
Ye, J., Zhang, X., Young, C., Rudashevskaya, E., Nawrocki, A., Palmgren, Michael, Fuglsang, Anja Thoe & Jensen, O. N., 2008. 1 p.Research output: Contribution to conference › Conference abstract for conference › Research
- Published
Plant Phosphoproteomics: Analysis of Plasma Membrane Transporters by Mass Spectrometry
Ye, J., Rudashevskaya, E., Fuglsang, Anja Thoe, Palmgren, Michael & Jensen, O. N., 2008. 1 p.Research output: Contribution to conference › Conference abstract for conference › Research
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
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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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