EMPIAR-11252
Cryo-EM snapshots of Eukaryotic Membrane Proteins in Native Lipid-Bilayer Nanodiscs [multiple data sets in MRC format]
Publication:

Cryo-Electron Microscopy Snapshots of Eukaryotic Membrane Proteins in Native Lipid-Bilayer Nanodiscs

Janson K, Kyrilis FL, Tüting C, Alfes M, Das M, Träger TK, Schmidt C, Hamdi F, Vargas C, Keller S, Meister A, Kastritis PL

Biomacromolecules 23 (2022) 5084-5094

PMID: 36399657

Related EMDB entry:
Deposited:
2022-08-01
Released:
2023-02-13
Last modified:
2023-02-13
Imageset size:
5.71 TB
Imageset DOI:
Experimental metadata:
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Compressed by PDBj:

Image formats and pixel types shown below are those of the original, non-compressed files.

MRC movies (FoilHole*Fractions.mrc) in this entry were compressed by bzip2 (pbzip2)
by EMPIAR Japan to save space and bandwidth.

Some programs (e.g. RELION >= 4.0.1 and CryoSPARC) can process compressed movies without explicit
decompression. For other programs, movies have to be decompressed beforehand. In this case,
you might want to convert decompressed MRC movies into TIFF to save your local storage.

Original size:   13,994,564,558 kilobytes
Compressed size:  6,126,677,048 kilobytes
Contains:
  • micrographs - multiframe
1. Thin-ice acquisition of native nanodiscs from Chaetomium thermophilum
Category:
micrographs - multiframe
Image format:
MRC
No. of images or tilt series:
1207
Image size:
(4096, 4096)
Pixel type:
SIGNED 16 BIT INTEGER
Pixel spacing:
(0.5918, 0.5918)
Details:
High resolution multi-frame micrographs of native nanodiscs in thin ice. Due to the ice thickness, top and bottom views are clearly visible.
Files:
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2. Thick-ice acquisition of native nanodiscs from Chaetomium thermophilum
Category:
micrographs - multiframe
Image format:
MRC
No. of images or tilt series:
5913
Image size:
(4096, 4096)
Pixel type:
SIGNED BYTE
Pixel spacing:
(0.5918, 0.5918)
Details:
High resolution multi-frame micrographs of native nanodiscs in thicker ice. Due to the thicker ice, nanodiscs and proteins are present in all rotational orientations without preference.
Files:
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Files:
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Ito F, Alvarez-Cabrera AL, Liu S, Yang H, Shiriaeva A, Zhou ZH, Chen XS. (2023)
Rigden DJ, Fernández XM. (2023)
Iudin A, Korir PK, Somasundharam S, Weyand S, Cattavitello C, Fonseca N, Salih O, Kleywegt GJ, Patwardhan A. (2023)
Serra Lleti JM, Steyer AM, Schieber NL, Neumann B, Tischer C, Hilsenstein V, Holtstrom M, Unrau D, Kirmse R, Lucocq JM, Pepperkok R, Schwab Y. (2023)
Caldwell BJ, Norris AS, Karbowski CF, Wiegand AM, Wysocki VH, Bell CE. (2022)