Michael J. Davies
Professor
Inflammation, Metabolism and Oxidation
Blegdamsvej 3
2200 København N.
- Published
Identification of galectin-1 and other cellular targets of alpha,beta-unsaturated carbonyl compounds, including dimethylfumarate, by use of click-chemistry probes
Sauerland, Max Benjamin, Helm, C., Lorentzen, Lasse Gøbel, Manandhar, Asmita, Ulven, Trond, Gamon, Luke Francis & Davies, Michael J., 2023, In: Redox Biology. 59, 15 p., 102560.Research output: Contribution to journal › Journal article › peer-review
- Published
The leucine-rich repeat domain of human peroxidasin 1 promotes binding to laminin in basement membranes
Sevcnikar, B., Schaffner, I., Chuang, Christine, Gamon, Luke Francis, Paumann-Page, M., Hofbauer, S., Davies, Michael J., Furtmüller, P. G. & Obinger, C., 15 Aug 2020, In: Archives of Biochemistry and Biophysics. 689, 7 p., 108443.Research output: Contribution to journal › Journal article › peer-review
Protein oxidation injury occurs during pediatric cardiopulmonary bypass
Sheil, M. L., Luxford, C., Davies, Michael J., Peat, J. K., Nunn, G. & Celermajer, D. S., Oct 2005, In: Journal of Thoracic and Cardiovascular Surgery. 130, 4, p. 1054-61 8 p.Research output: Contribution to journal › Journal article › peer-review
- Published
Reaction of quinones with proteins: Kinetics of adduct formation, effects on enzymatic activity and protein structure, and potential reversibility of modifications
Shu, N., Lorentzen, Lasse Gøbel & Davies, Michael J., 2019, In: Free Radical Biology and Medicine. 137, p. 169-180Research output: Contribution to journal › Journal article › peer-review
- Published
Inhibition and crosslinking of the selenoprotein thioredoxin reductase-1 by p-benzoquinone
Shu, N., Cheng, Q., Arner, E. S. J. & Davies, Michael J., 2020, In: Redox Biology. 28, 9 p., 101335 .Research output: Contribution to journal › Journal article › peer-review
- Published
Kinetics and biological consequences of quinone-induced protein adduction: [Meeting Abstract]
Shu, N., Lorentzen, Lasse Gøbel & Davies, Michael J., 2018, In: Free Radical Biology and Medicine. 120, S1, p. S55-S55 P-34.Research output: Contribution to journal › Conference abstract in journal › peer-review
- Published
Modification of selenocysteine residues in thioredoxin reductase and glutathione peroxidase by p-benzoquinone affects protein structure and function: [Meeting Abstract]
Shu, N. & Davies, Michael J., 1 Aug 2019, In: Free Radical Biology and Medicine. 139, S1, p. S49-S49 168.Research output: Contribution to journal › Conference abstract in journal
- Published
Modification of Cys residues in thioredoxin by p-benzoquinone causes inhibition of its catalytic activity and activation of ASK1/p38-MAPK signalling pathway: [Meeting Abstract]
Shu, N., Hägglund, Per Mårten & Davies, Michael J., 1 Aug 2019, In: Free Radical Biology and Medicine. 139, S1, p. S9-S9 8.Research output: Contribution to journal › Conference abstract in journal
- Published
Modification of Cys residues in human thioredoxin-1 by p-benzoquinone causes inhibition of its catalytic activity and activation of the ASK1/p38-MAPK signalling pathway
Shu, N., Hägglund, Per Mårten, Cai, H., Hawkins, Clare Louise & Davies, Michael J., Jan 2020, In: Redox Biology. 29, UNSP 101400.Research output: Contribution to journal › Journal article › peer-review
- Published
Defining roles of specific reactive oxygen species (ROS) in cell biology and physiology
Sies, H., Belousov, V. V., Chandel, N. S., Davies, Michael J., Jones, D. P., Mann, G. E., Murphy, M. P., Yamamoto, M. & Winterbourn, C., 2022, In: Nature Reviews Molecular Cell Biology. 23, p. 499–515Research output: Contribution to journal › Review › peer-review
ID: 38036205
Most downloads
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756
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Protein oxidation and peroxidation
Research output: Contribution to journal › Review › peer-review
Published -
231
downloads
Catalytic oxidant scavenging by selenium-containing compounds: Reduction of selenoxides and N-chloramines by thiols and redox enzymes
Research output: Contribution to journal › Journal article › peer-review
Published -
207
downloads
Cardiac spheroids as promising in vitro models to study the human heart microenvironment
Research output: Contribution to journal › Journal article › peer-review
Published