
Publications of Uris Ros
All genres
Journal Article (37)
1.
Journal Article
85 (2025)
MLKL activity requires a splicing-regulated, druggable intramolecular interaction. Molecular Cell 2.
Journal Article
742, 151071 (2025)
Extension of sticholysins N-terminal α-helix signals membrane lipids to acquire curvature for toroidal pore formation. Biochemical and Biophysical Research Communications 3.
Journal Article
280 (Pt 4), 136244 (2024)
Decoupling immunomodulatory properties from lipid binding in the α-pore-forming toxin Sticholysin II. International Journal of Biological Macromolecules 4.
Journal Article
114, 102778 (2023)
Calcium as a master regulator of ferroptosis and other types of regulated necrosis. Cell Calcium 5.
Journal Article
24 (12), 10108 (2023)
The Many Faces of MLKL, the Executor of Necroptosis. International Journal of Molecular Sciences 6.
Journal Article
15, 80 (2023)
The Important Role of Membrane Fluidity on the Lytic Mechanism of the α-Pore-Forming Toxin Sticholysin I. toxins 7.
Journal Article
28, pp. 3235 - 3250 (2022)
MLKL promotes cellular differentiation in myeloid leukemia by facilitating the release of G-CSF. Cell Death and Differentiation 8.
Journal Article
13 (3), pp. 822 - 829 (2022)
Systematic Assessment of the Accuracy of Subunit Counting in Biomolecular Complexes Using Automated Single-Molecule Brightness Analysis. The Journal of Physical Chemistry Letters 9.
Journal Article
13 (9), 669 (2021)
Force Mapping Study of Actinoporin Effect in Membranes Presenting Phase Domains. Toxins 10.
Journal Article
13 (8), 567 (2021)
Panorama of the Intracellular Molecular Concert Orchestrated by Actinoporins, Pore-Forming Toxins from Sea Anemones. Toxins 11.
Journal Article
69, pp. 108 - 116 (2021)
Techniques for studying membrane pores. Current Opinion in Structural Biology 12.
Journal Article
28 (5), pp. 1644 - 1657 (2021)
Ferroptotic pores induce Ca2+ fluxes and ESCRT-III activation to modulate cell death kinetics. Cell Death and Differentiation 13.
Journal Article
234, 105026 (2021)
Pore-forming proteins: From defense factors to endogenous executors of cell death. Chemistry and Physics of Lipids 14.
Journal Article
39 (23), e105753 (2020)
Pore formation in regulated cell death. The EMBO Journal 15.
Journal Article
21 (7), 2412 (2020)
Partners in Crime: The Interplay of Proteins and Membranes in Regulated Necrosis. International Journal of Molecular Sciences 16.
Journal Article
117 (9), pp. 1563 - 1576 (2019)
Membrane Remodeling by the Lytic Fragment of SticholysinII: Implications for the Toroidal Pore Model. Biophysical Journal 17.
Journal Article
218 (2), pp. 683 - 699 (2019)
Single event visualization of unconventional secretion of FGF2. Journal of Cell Biology 18.
Journal Article
156, pp. 109 - 117 (2019)
Self-association and folding in membrane determine the mode of action of peptides from the lytic segment of sticholysins. Biochimie 19.
Journal Article
148, pp. 18 - 35 (2018)
Sticholysin II-mediated cytotoxicity involves the activation of regulated intracellular responses that anticipates cell death. Biochimie 20.
Journal Article
110 (5) (2018)
Insights on the structure-activity relationship of peptides derived from Sticholysin II. Peptide Science