Dr. Martin Beck
DirectorCurriculum Vitae
Born 1977 in Leipzig, Germany. Studies of Biochemistry in Halle/Saale, PhD studies at the Max Planck Institute of Biochemistry in Martinsried, doctorate from the Technical University of Munich (2006), post-doc at the Swiss Federal Institute of Technology in Zurich (2006–2009), group leader and senior scientist at the European Molecular Biology Laboratory (EMBL) in Heidelberg, Germany (2010-2020), Director und Scientific Member at the Max Planck Institute of Biophysics (since 2019).
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ERC-CoG
SFB1129
Journal Article (111)
2024
Journal Article
15, 4783 (2024)
Bactericidal effect of tetracycline in E. coli strain ED1a may be associated with ribosome dysfunction. Nature Communications Journal Article (33)
2024
Journal Article
15, 4783 (2024)
Bactericidal effect of tetracycline in E. coli strain ED1a may be associated with ribosome dysfunction. Nature Communications
Journal Article
15, 3992 (2024)
High-confidence 3D template matching for cryo-electron tomography. Nature Communications
Journal Article
10 (17), eadk6285 (2024)
Thinner is not always better: Optimizing cryo-lamellae for subtomogram averaging. Science Advances
Journal Article
187 (3), pp. 545 - 562 (2024)
Understanding the cell: Future views of structural biology. Cell
Journal Article
84 (3), pp. 404 - 408 (2024)
AlphaFold: Research accelerator and hypothesis generator. Molecular Cell 2023
Journal Article
83, pp. 4318 - 4333 (2023)
Structural basis of RNA-induced autoregulation of the DExH-type RNA helicase maleless. Molecular Cell
Journal Article
14, 1261180 (2023)
Preparing Arabidopsis thaliana root protoplasts for cryo electron tomography. Frontiers in Plant Science
Journal Article
30, pp. 1119 - 1131 (2023)
Structure of nascent 5S RNPs at the crossroad between ribosome assembly and MDM2-p53 pathways. Nature Structural and Molecular Biology
Journal Article
381 (6653), pp. 70 - 75 (2023)
Translation dynamics in human cells visualized at high resolution reveal cancer drug action. Science
Journal Article
14, 3418 (2023)
Co-translational binding of importins to nascent proteins. Nature Communications
Journal Article
617 (7959), pp. 162 - 169 (2023)
Visualizing the disordered nuclear transport machinery in situ. Nature 2022
Journal Article
13, 7431 (2022)
Protein-Peptide Turnover Profiling reveals the order of PTM addition and removal during protein maturation. Nature Communications
Journal Article
13, 7435 (2022)
Structures of the eukaryotic ribosome and its translational states in situ. Nature Communications
Journal Article
8 (35), eabq5206 (2022)
Operation of a TCA cycle subnetwork in the mammalian nucleus. Science Advances
Journal Article
376 (6598), eabm9506 (2022)
AI-based structure prediction empowers integrative structural analysis of human nuclear pores. Science
Journal Article
5 (6), e202201397 (2022)
Conserved exchange of paralog proteins during neuronal differentiation. Life science alliance
Journal Article
13, 1224 (2022)
Co-translational assembly orchestrates competing biogenesis pathways. Nature Communications 2021
Journal Article
374 (6573), eabd9776 (2021)
Nuclear pores dilate and constrict in cellulo. Science
Journal Article
32 (17), pp. 1523 - 1533 (2021)
Three-dimensional superresolution fluorescence microscopy maps the variable molecular architecture of the nuclear pore complex. Molecular Biology of the Cell
Journal Article
184 (4), pp. 1032 - 1046 (2021)
Cone-shaped HIV-1 capsids are transported through intact nuclear pores. Cell
Journal Article
28 (1), pp. 2 - 7 (2021)
Structural biology in the fight against COVID-19. Nature Structural and Molecular Biology 2020
Journal Article
586 (7831), pp. 796 - 800 (2020)
In-cell architecture of the nuclear pore and snapshots of its turnover. Nature
Journal Article
370 (6513), pp. 203 - 208 (2020)
In situ structural analysis of SARS-CoV-2 spike reveals flexibility mediated by three hinges. Science
Journal Article
15 (9), pp. 2956 - 2979 (2020)
Spatially resolved analysis of FFPE tissue proteomes by quantitative mass spectrometry. Nature Protocols
Journal Article
27 (8), pp. 743 - 751 (2020)
Cryo-EM structures of holo condensin reveal a subunit flip-flop mechanism. Nature Structural and Molecular Biology
Journal Article
11, 876 (2020)
Benchmarking tomographic acquisition schemes for high-resolution structural biology. Nature Communications
Journal Article
92 (5), pp. 4016 - 4022 (2020)
Proteome-Wide Structural Probing of Low-Abundant Protein Interactions by Cross-Linking Mass Spectrometry. Analytical Chemistry
Journal Article
22 (2), pp. 159 - 166 (2020)
Selective autophagy degrades nuclear pore complexes. Nature Cell Biology 2019
Journal Article
179 (3), pp. 671 - 686.e17 (2019)
Nuclear Pores Assemble from Nucleoporin Condensates During Oogenesis. Cell
Journal Article
29 (10), pp. 791 - 803 (2019)
The Benefits of Cotranslational Assembly: A Structural Perspective. Trends in Cell Biology
Journal Article
10, 2147 (2019)
Nucleoporin Nup155 is part of the p53 network in liver cancer. Nature Communications
Journal Article
48, pp. 515 - 536 (2019)
Structure and Assembly of the Nuclear Pore Complex. Annual Review of Biophysics 2018
Journal Article
8, 11249 (2018)
Nuclear Pore Complex Components in the Malaria Parasite Plasmodium Berghei. Scientific Reports