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Journal Article (31)
1.
Journal Article
7, 146 (2020)
Large database for the analysis and prediction of spliced and non-spliced peptide generation by proteasomes. Scientific Data 2.
Journal Article
50 (2), pp. 270 - 283 (2020)
ER-aminopeptidase 1 determines the processing and presentation of an immunotherapy-relevant melanoma epitope. European Journal of Immunology 3.
Journal Article
294, pp. 7740 - 7754 (2019)
Proteolytic dynamics of human 20S thymoproteasome. Journal of Biological Chemistry 4.
Journal Article
8 (3), 262 (2019)
Untangling extracellular proteasome-osteopontin circuit dynamics in multiple sclerosis. Cells 5.
Journal Article
7 (1), pp. 62 - 76 (2019)
Mapping the MHC class I spliced immunopeptidome of cancer cells. Cancer Immunology Research 6.
Journal Article
10, 2572 (2019)
An in silico-in vitro pipeline identifying an HLA-A*02:01+ KRAS G12V+ spliced epitope candidate for a broad tumor-immune response in cancer patients. Frontiers in Immunology 7.
Journal Article
52, pp. 81 - 86 (2018)
Why do proteases mess up with antigen presentation by re-shuffling antigen sequences? Current Opinion in Immunology 8.
Journal Article
34 (7), pp. 1249 - 1250 (2018)
PEITH(Θ) - perfecting experiments with information theory in python with GPU support. Bioinformatics 9.
Journal Article
38 (12), pp. 904 - 915 (2017)
Post-translational peptide splicing and T cell responses. Trends in Immunology 10.
Journal Article
8, 1441 (2017)
An unexpected major role for proteasome-catalyzed peptide splicing in generation of T cell epitopes: Is there relevance for vaccine development? Frontiers in Immunology 11.
Journal Article
35 (11), pp. 2292 - 2304 (2017)
Single cell phenotyping reveals heterogeneity among haematopoietic stem cells following infection. Stem Cells 12.
Journal Article
20 (5), pp. 1242 - 1253 (2017)
Multi-level strategy for identifying proteasome-catalyzed spliced epitopes targeted by CD8+ T cells during bacterial infection. Cell Reports 13.
Journal Article
7, 43718 (2017)
Extracellular proteasome-osteopontin circuit regulates cell migration with implications in multiple sclerosis. Scientific Reports 14.
Journal Article
354 (6310), pp. 354 - 358 (2016)
A large fraction of HLA class I ligands are proteasome-generated spliced peptides. Science 15.
Journal Article
26 (15), pp. 1975 - 1989 (2016)
Systems analysis of the dynamic inflammatory response to tissue damage reveals spatiotemporal properties of the wound attractant gradient. Current Biology 16.
Journal Article
3 (1), pp. 102 - 107 (2016)
Accurate reconstruction of cell and particle tracks from 3D live imaging data. Cell Systems 17.
Journal Article
46 (5), pp. 1109 - 1118 (2016)
CD8(+) T cells of Listeria monocytogenes-infected mice recognize both linear and spliced proteasome products. European Journal of Immunology 18.
Journal Article
290 (51), pp. 30417 - 30428 (2015)
The T210M substitution in the HLA-a*02:01 gp100 epitope strongly affects overall proteasomal cleavage site usage and antigen processing. Journal of Biological Chemistry 19.
Journal Article
12 (6), 066001 (2015)
Inference of random walk models to describe leukocyte migration. Physical Biology 20.
Journal Article
4, e07545 (2015)
Quantitative time-resolved analysis reveals intricate, differential regulation of standard- and immuno-proteasomes. eLife