Zeitschriftenartikel (108)
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32 (17), S. 1523 - 1533 (2021)
Three-dimensional superresolution fluorescence microscopy maps the variable molecular architecture of the nuclear pore complex. Molecular Biology of the Cell 22.
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16 (7), e0254429 (2021)
Coupling proteomics and metabolomics for the unsupervised identification of protein–metabolite interactions in Chaetomium thermophilum. PLoS One 23.
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184 (4), S. 1032 - 1046 (2021)
Cone-shaped HIV-1 capsids are transported through intact nuclear pores. Cell 24.
Zeitschriftenartikel
28 (1), S. 2 - 7 (2021)
Structural biology in the fight against COVID-19. Nature Structural and Molecular Biology 25.
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586 (7831), S. 796 - 800 (2020)
In-cell architecture of the nuclear pore and snapshots of its turnover. Nature 26.
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370 (6513), S. 203 - 208 (2020)
In situ structural analysis of SARS-CoV-2 spike reveals flexibility mediated by three hinges. Science 27.
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117 (36), S. 22157 - 22166 (2020)
Structural impact of K63 ubiquitin on yeast translocating ribosomes under oxidative stress. Proceedings of the National Academy of Sciences of the United States of America 28.
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15 (9), S. 2956 - 2979 (2020)
Spatially resolved analysis of FFPE tissue proteomes by quantitative mass spectrometry. Nature Protocols 29.
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27 (8), S. 743 - 751 (2020)
Cryo-EM structures of holo condensin reveal a subunit flip-flop mechanism. Nature Structural and Molecular Biology 30.
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11, 876 (2020)
Benchmarking tomographic acquisition schemes for high-resolution structural biology. Nature Communications 31.
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92 (5), S. 4016 - 4022 (2020)
Proteome-Wide Structural Probing of Low-Abundant Protein Interactions by Cross-Linking Mass Spectrometry. Analytical Chemistry 32.
Zeitschriftenartikel
22 (2), S. 159 - 166 (2020)
Selective autophagy degrades nuclear pore complexes. Nature Cell Biology 33.
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21, S. 664 - 680 (2019)
Quantitative Proteome Landscape of the NCI-60 Cancer Cell Lines. iScience 34.
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179 (3), S. 671 - 686.e17 (2019)
Nuclear Pores Assemble from Nucleoporin Condensates During Oogenesis. Cell 35.
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29 (10), S. 791 - 803 (2019)
The Benefits of Cotranslational Assembly: A Structural Perspective. Trends in Cell Biology 36.
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177 (5), S. 1308 - 1318 (2019)
Disentangling Genetic and Environmental Effects on the Proteotypes of Individuals. Cell 37.
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10, 2147 (2019)
Nucleoporin Nup155 is part of the p53 network in liver cancer. Nature Communications 38.
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48, S. 515 - 536 (2019)
Structure and Assembly of the Nuclear Pore Complex. Annual Review of Biophysics 39.
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8, e45284 (2019)
An ESCRT-LEM Protein Surveillance System Is Poised to Directly Monitor the Nuclear Envelope and Nuclear Transport System. eLife 40.
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52, S. 32 - 40 (2018)
From the resolution revolution to evolution: structural insights into the evolutionary relationships between vesicle coats and the nuclear pore. Current Opinion in Structural Biology