Follow
Michael Grange
Michael Grange
Rosalind Franklin Institute
Verified email at rfi.ac.uk
Title
Cited by
Cited by
Year
Structural basis of vesicle formation at the inner nuclear membrane
C Hagen, KC Dent, T Zeev-Ben-Mordehai, M Grange, JB Bosse, C Whittle, ...
Cell 163 (7), 1692-1701, 2015
2032015
The molecular basis for sarcomere organization in vertebrate skeletal muscle
Z Wang, M Grange, T Wagner, AL Kho, M Gautel, S Raunser
Cell 184 (8), 2135-2150. e13, 2021
1152021
Structures from intact myofibrils reveal mechanism of thin filament regulation through nebulin
Z Wang, M Grange, S Pospich, T Wagner, AL Kho, M Gautel, S Raunser
Science 375 (6582), eabn1934, 2022
712022
A streamlined workflow for automated cryo focused ion beam milling
S Tacke, P Erdmann, Z Wang, S Klumpe, M Grange, J Plitzko, S Raunser
Journal of Structural Biology 213 (3), 107743, 2021
692021
Plasma FIB milling for the determination of structures in situ
C Berger, M Dumoux, T Glen, NB Yee, JM Mitchels, Z Patáková, ...
Nature communications 14 (1), 629, 2023
442023
Cellular electron cryo tomography and in situ sub-volume averaging reveal the context of microtubule-based processes
M Grange, D Vasishtan, K Grünewald
Journal of Structural Biology 197 (2), 181-190, 2017
402017
Electron Bio-Imaging Centre (eBIC): the UK national research facility for biological electron microscopy
DK Clare, CA Siebert, C Hecksel, C Hagen, V Mordhorst, M Grange, ...
Acta Crystallographica Section D: Structural Biology 73 (6), 488-495, 2017
322017
Structure of the native myosin filament in the relaxed cardiac sarcomere
D Tamborrini, Z Wang, T Wagner, S Tacke, M Stabrin, M Grange, AL Kho, ...
Nature 623 (7988), 863-871, 2023
282023
Electron cryo-tomography captures macromolecular complexes in native environments
LA Baker, M Grange, K Grünewald
Current opinion in structural biology 46, 149-156, 2017
262017
Cellular electron cryo-tomography to study virus-host interactions
ERJ Quemin, EA Machala, B Vollmer, V Pražák, D Vasishtan, R Rosch, ...
Annual review of virology 7, 239-262, 2020
182020
Cryo-plasma FIB/SEM volume imaging of biological specimens
M Dumoux, T Glen, JLR Smith, EML Ho, LMA Perdigão, A Pennington, ...
Elife 12, e83623, 2023
142023
In situ structures from relaxed cardiac myofibrils reveal the organization of the muscle thick filament
D Tamborrini, Z Wang, T Wagner, S Tacke, M Stabrin, M Grange, AL Kho, ...
BioRxiv, 2023.04. 11.536387, 2023
102023
Structure of the thin filament in native skeletal muscles reveals its interaction with nebulin and two distinct conformations of myosin
Z Wang, M Grange, S Pospich, T Wagner, AL Kho, M Gautel, S Raunser
bioRxiv, 2021.10. 06.463400, 2021
32021
Molecular plasticity of the native mouse skeletal sarcomere revealed by cryo-ET
Z Wang, M Grange, T Wagner, AL Kho, M Gautel, S Raunser
bioRxiv, 2020.09. 13.295386, 2020
22020
NECing goes: flexibility of the herpesvirus nuclear egress complex
V Pražák, Y Mironova, D Vasishtan, C Hagen, U Laugks, Y Jensen, ...
bioRxiv, 2023.07. 07.547920, 2023
12023
Okapi-EM: A napari plugin for processing and analyzing cryogenic serial focused ion beam/scanning electron microscopy images
LMA Perdigão, EML Ho, ZC Cheng, NBY Yee, T Glen, L Wu, M Grange, ...
Biological Imaging 3, e9, 2023
12023
Demographics and employment of Max-Planck Society’s postdocs
M Vallier, M Mueller, P Alcami, G Bellucci, M Grange, YX Lu, S Duponchel
bioRxiv, 2020.11. 27.399733, 2020
12020
An integrated structural cell biology to unravel the vesicle and membrane coat formation mechanism at the inner nuclear envelope
C Hagen, T Zeev‐Ben‐Mordehai, K Dent, M Grange, JB Bosse, ...
European Microscopy Congress 2016: Proceedings, 997-998, 2016
12016
Ot2Rec: A semi-automatic, extensible, multi-software tomographic reconstruction workflow
NB Yee, EML Ho, M Darrow, M Basham
Biophysical Journal 122 (3), 462a, 2023
2023
A protocol for cryogenic volumetric imaging using serial plasma FIB/SEM
M Dumoux, JLR Smith, T Glen, M Grange, MC Darrow, JH Naismith
Methods in Cell Biology 177, 327-358, 2023
2023
The system can't perform the operation now. Try again later.
Articles 1–20