Arabidopsis casein kinase 2 triggers stem cell exhaustion under Al toxicity and phosphate deficiency through activating the DNA damage response pathway P Wei, M Demulder, P David, T Eekhout, KO Yoshiyama, L Nguyen, ... The Plant Cell 33 (4), 1361-1380, 2021 | 34 | 2021 |
F/YGG-motif is an intrinsically disordered nucleic-acid binding motif J Van Lindt, T Lazar, D Pakravan, M Demulder, A Meszaros, ... RNA biology 19 (1), 622-635, 2022 | 17 | 2022 |
Diatom pyrenoids are encased in a protein shell that enables efficient CO2 fixation G Shimakawa, M Demulder, S Flori, A Kawamoto, Y Tsuji, H Nawaly, ... Cell 187 (21), 5919-5934. e19, 2024 | 9 | 2024 |
A protein blueprint of the diatom CO2-fixing organelle O Nam, S Musiał, M Demulder, C McKenzie, A Dowle, M Dowson, ... Cell 187 (21), 5935-5950. e18, 2024 | 7 | 2024 |
Crystal structure of Arabidopsis thaliana casein kinase 2 α1 M Demulder, L De Veylder, R Loris Acta Crystallographica Section F: Structural Biology Communications 76 (4 …, 2020 | 3 | 2020 |
The RNA-dependent phase separation by the conserved DNA-binding NAC domain of SOG1. R Van der Eecken, K Mignon, M Galle, M Demulder, J Van Lindt, R Loris Gordon Research Conference: Intrisically Disordered Proteins, 2024 | | 2024 |
In vitro study of liquid-liquid phase separation (LLPS) by SOG1 M Demulder, M Galle, J Van Lindt, R Van der Eecken, R Loris Rethinking Transcription Factors, 2022 | | 2022 |
Molecular basis of DNA recognition by SOG1: the master regulator for DNA damage control in plants M Demulder, K Mignon, M Galle, R Loris GRC-Intriscially Disordered Proteins, 2022 | | 2022 |
The role of liquid-liquid phase separation (LLPS) in the regulatory mechanism of SOG1 M Demulder, M Galle, J Van Lindt, R Van der Eecken, R Loris GRC-Intriscially Disordered Proteins, 2022 | | 2022 |
Arabidopsis Casein Kinase 2 triggers Stem Cell Exhaustion under Al Toxicity and Phosphate Deficiency Through activation of the DNA Damage Response pathway W Pengliang, M Demulder, P David, T Eekhout, KO Yoshiyama, L Nguyen, ... | | 2020 |
Structure-function relationships of Arabidopsis thaliana SOG1, a master regulator in plant DNA damage control M Demulder | | 2020 |