Publikationen
Zeitschriftenartikel (309)
1.
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Good reasons for structural biology. Nature Structural & Molecular Biology (2024)
2.
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15, 1297 (2024)
Cryo-EM structures of lipidic fibrils of amyloid-β (1-40). Nature Communications 3.
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31, S. 364 - 377 (2024)
Structural mechanisms of autoinhibition and substrate recognition by the ubiquitin ligase HACE1. Nature Structural & Molecular Biology 4.
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Structural basis for RNA polymerase II ubiquitylation and inactivation in transcription-coupled repair. Nature Structural & Molecular Biology (2024)
5.
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In vitro reconstitution of chromatin domains shows a role for nucleosome positioning in 3D genome organization. Nature Genetics (2024)
6.
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15, 317 (2024)
Tail-tape-fused virion and non-virion RNA polymerases of a thermophilic virus with an extremely long tail. Nature Communications 7.
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31 (1), e9, S. 127 - 147 (2024)
Highly cooperative chimeric super-SOX induces naive pluripotency across species. Cell Stem Cell 8.
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84, 102766 (2024)
RNA polymerase II elongation factors use conserved regulatory mechanisms. Current Opinion in Structural Biology 9.
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624 (7990), S. 173 - 181 (2023)
MSL2 ensures biallelic gene expression in mammals. Nature 10.
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30, S. 1925 - 1935 (2023)
Structure of the transcribing RNA polymerase II–Elongin complex. Nature Structural & Molecular Biology 11.
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37, S. 1830 - 1841 (2023)
Perturbed epigenetic transcriptional regulation in AML with IDH mutations causes increased susceptibility to NK cells. Leukemia 12.
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83 (14), S. 2464 - 2477.e5 (2023)
Structural insights into human co-transcriptional capping. Molecular Cell 13.
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83 (13), S. 2240 - 2257 (2023)
ARS2 instructs early transcription termination-coupled RNA decay by recruiting ZC3H4 to nascent transcripts. Molecular Cell 14.
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30, S. 991 - 1000 (2023)
The Mediator complex regulates enhancer-promoter interactions. Nature Structural and Molecular Biology 15.
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83 (11), S. 1798 - 1809.e7 (2023)
Structural basis of transcription reduction by a promoter-proximal +1 nucleosome. Molecular Cell 16.
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617, S. 842 - 850 (2023)
Structural basis of catalytic activation in human splicing. Nature 17.
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Mediator structure and function in transcription initiation. Biological Chemistry, aop (2023)
18.
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120 (15), e2220542120 (2023)
Yeast PIC-mediator structure with RNA polymerase II C-terminal domain. Proceedings of the National Academy of Sciences of the United States of America 19.
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9 (9), eadf178 (2023)
Regulation of 3′ splice site selection after step 1 of splicing by spliceosomal C* proteins. Science Advances 20.
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30, S. 226 - 232 (2023)
Structures of transcription preinitiation complex engaged with the +1 nucleosome. Nature Structural and Molecular Biology 21.
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10 (Part 1), S. 4 - 5 (2023)
Towards automating single-particle cryo-EM data acquisition. IUCRJ 22.
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14 (1), 5979 (2023)
Driving forces behind phase separation of the carboxy-terminal domain of RNA polymerase II. Nature Communications 23.
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29, S. 1159 - 1169 (2022)
Structural basis of SNAPc-dependent snRNA transcription initiation by RNA polymerase II. Nature Structural and Molecular Biology 24.
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13 (1), 6810 (2022)
The 3D structure of lipidic fibrils of α-synuclein. Nature Communications 25.
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13 (1), 6182 (2022)
Sublinear scaling of the cellular proteome with ploidy. Nature Communications 26.
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610 (7930), S. 205 - 211 (2022)
Visualizing translation dynamics at atomic detail inside a bacterial cell. Nature 27.
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46, 101580 (2022)
Multivalent ACE2 engineering-A promising pathway for advanced coronavirus nanomedicine development. Nano Today 28.
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5 (1), 1040 (2022)
Quaternary structure of patient-homogenate amplified α-synuclein fibrils modulates seeding of endogenous α-synuclein. Communications Biology 29.
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14, S. 1278 - 1285 (2022)
Molecular interactions of FG nucleoporin repeats at high resolution. Nature Chemistry 30.
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13, S. 5385 - 5394 (2022)
The clinical drug candidate anle138b binds in a cavity of lipidic α-synuclein fibrils. Nature Communications 31.
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82 (17), S. 3126 - 3134.e7 (2022)
Structure of a backtracked hexasomal intermediate of nucleosome transcription. Molecular Cell 32.
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61 (15), S. 1633 - 1641 (2022)
HUG Domain Is Responsible for Active Dimer Stabilization in an NrdJd Ribonucleotide Reductase. Biochemistry 33.
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11, e71533 (2022)
Oct4 differentially regulates chromatin opening and enhancer transcription in pluripotent stem cells. eLife 34.
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29 (5), S. 493 - 501 (2022)
Histone H1 binding to nucleosome arrays depends on linker DNA length and trajectory. Nature Structural and Molecular Biology 35.
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54 (3), S. 283 - 294 (2022)
Sequence determinants of human gene regulatory elements. Nature Genetics 36.
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17 (2), S. 445 - 475 (2022)
Capture-C: a modular and flexible approach for high-resolution chromosome conformation capture. Nature Protocols 37.
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12 (5), jkac054 (2022)
RNA transcription and degradation of Alu retrotransposons depends on sequence features and evolutionary history. G3: Genes, Genomes, Genetics 38.
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18 (1), e10407 (2022)
Distinct transcription kinetics of pluripotent cell states. Molecular Systems Biology 39.
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374 (6569), S. 883 - 887 (2021)
Structural basis of Integrator-mediated transcription regulation. Science 40.
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598 (7880), S. 368 - 372 (2021)
Structural basis of human transcription–DNA repair coupling. Nature 41.
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49 (18), S. 10747 - 10755 (2021)
Structure of an inactive RNA polymerase II dimer. Nucleic Acids Research 42.
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27 (10), S. 1281 - 1290 (2021)
The total mRNA concentration buffering system in yeast is global rather than gene-specific. RNA 43.
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40 (19), e107985 (2021)
Neutralization of SARS-CoV-2 by highly potent, hyperthermostable, and mutation-tolerant nanobodies. EMBO Journal 44.
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28 (9), S. 713 - 723 (2021)
Structural basis of RNA processing by human mitochondrial RNase P. Nature Structural and Molecular Biology 45.
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28 (9), S. 704 - 705 (2021)
AlphaFold2 and the future of structural biology. Nature Structural and Molecular Biology 46.
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28 (9), S. 740 - 746 (2021)
Mechanism of molnupiravir-induced SARS-CoV-2 mutagenesis. Nature Structural and Molecular Biology 47.
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4, 999 (2021)
The structure of a dimeric form of SARS-CoV-2 polymerase. Communications Biology 48.
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81 (15), S. 3096 - 3109.e8 (2021)
Two distinct mechanisms of RNA polymerase II elongation stimulation in vivo. Molecular Cell 49.
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118 (30), e2108859118 (2021)
Structures and implications of TBP–nucleosome complexes. Proceedings of the National Academy of Sciences of the USA 50.
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184 (15), S. 4064 - 4072.e28 (2021)
Structure of RNA polymerase II pre-initiation complex at 2.9 Å defines initial DNA opening. Cell