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Showing all 44 items for (author: tacke & s)

EMDB-51295:
Recombinant Myeloperoxidase bound to nucleosome core particle
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-51296:
Nucleosome core particle
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-51297:
Native monomeric Myeloperoxidase bound to nucleosome core particle
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-51298:
Native dimeric Myeloperoxidase bound to nucleosome core particle; nucleosome focused map
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-51299:
Native dimeric Myeloperoxidase bound to nucleosome core particle; MPO focused map
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-51300:
Native dimeric Myeloperoxidase bound to nucleosome core particle; consensus map
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-51301:
Native dimeric Myeloperoxidase bound to nucleosome core particle; composite map
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-51302:
Native dimeric Myeloperoxidase bound to nucleosome core particle, intermediate state, nucleosome focused map
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-51303:
Native dimeric Myeloperoxidase bound to nucleosome core particle, intermediate state, map focused on MPO
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-51304:
Native dimeric Myeloperoxidase bound to nucleosome core particle, intermediate state, consensus map
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-51305:
Native dimeric Myeloperoxidase bound to nucleosome core particle, intermediate state; composite map
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-51306:
Native monomeric Myeloperoxidase bound to nucleosome core particle, late time point
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-52865:
Nucleosome core particle bound by one molecule of DTT-reduced native monomeric myeloperoxidase
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-52866:
Nucleosome core particle bound by two molecules of DTT-reduced native monomeric myeloperoxidase
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-52867:
Nucleosome core particle bound by one monomer and one dimer of of DTT-reduced native myeloperoxidase; map focused on nucleosome/MPO monomer
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-52868:
Nucleosome core particle bound by one monomer and one dimer of of DTT-reduced native myeloperoxidase; map focused on MPO dimer
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-52869:
Nucleosome core particle bound by one monomer and one dimer of of DTT-reduced native myeloperoxidase; consensus map
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-52870:
Nucleosome core particle bound by one monomer and one dimer of of DTT-reduced native myeloperoxidase
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

PDB-9gen:
Recombinant Myeloperoxidase bound to nucleosome core particle
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

PDB-9geo:
Nucleosome core particle
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

PDB-9gep:
Native monomeric Myeloperoxidase bound to nucleosome core particle
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

PDB-9geq:
Native dimeric Myeloperoxidase bound to nucleosome core particle; composite map
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

PDB-9ger:
Native dimeric Myeloperoxidase bound to nucleosome core particle, intermediate state; composite map
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

PDB-9ihd:
Nucleosome core particle bound by one molecule of DTT-reduced native monomeric myeloperoxidase
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

PDB-9ihe:
Nucleosome core particle bound by two molecules of DTT-reduced native monomeric myeloperoxidase
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

PDB-9ihf:
Nucleosome core particle bound by one monomer and one dimer of of DTT-reduced native myeloperoxidase
Method: single particle / : Raisch T, Burn GL, Tacke S, Winkler M, Prumbaum D, Thee S, Zychlinsky A, Raunser S

EMDB-16986:
Structure of the relaxed thin filament from FIB milled left ventricular mouse myofibrils (tropomyosin masked out)
Method: subtomogram averaging / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Rees M, Bennett P, Gautel M, Raunser S

EMDB-16987:
Structure of the relaxed thin filament from FIB milled left ventricular mouse myofibrils (including tropomyosin)
Method: subtomogram averaging / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Rees M, Bennett P, Gautel M, Raunser S

EMDB-16988:
Tomogram of sarcomere C-zone from mouse cardiac muscle
Method: electron tomography / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Rees M, Bennett P, Gautel M, Raunser S

EMDB-16989:
Tomogram of sarcomere M-band to C-zone from mouse cardiac muscle
Method: electron tomography / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Rees M, Bennett P, Gautel M, Raunser S

EMDB-16990:
Structure of the relaxed thick filament from FIB milled left ventricular mouse myofibrils - Crowns P2-A1
Method: subtomogram averaging / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Rees M, Bennett P, Gautel M, Raunser S

EMDB-16991:
Structure of the relaxed thick filament from FIB milled left ventricular mouse myofibrils - M-band
Method: subtomogram averaging / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Rees M, Bennett P, Gautel M, Raunser S

EMDB-16992:
Structure of the relaxed thick filament from FIB milled left ventricular mouse myofibrils - Crowns A15-A29
Method: subtomogram averaging / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Rees M, Bennett P, Gautel M, Raunser S

EMDB-16993:
Structure of the relaxed thick filament from FIB milled left ventricular mouse myofibrils - Crown P1
Method: subtomogram averaging / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Rees M, Bennett P, Gautel M, Raunser S

EMDB-16994:
Structure of the relaxed thick filament from FIB milled left ventricular mouse myofibrils - Crowns A11-A15
Method: subtomogram averaging / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Rees M, Bennett P, Gautel M, Raunser S

EMDB-16995:
Structure of the relaxed thick filament from FIB milled left ventricular mouse myofibrils - Crowns A8-A12
Method: subtomogram averaging / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Rees M, Bennett P, Gautel M, Raunser S

EMDB-16996:
Structure of the relaxed thick filament from FIB milled left ventricular mouse myofibrils - Crowns A5-A7
Method: subtomogram averaging / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Rees M, Bennett P, Gautel M, Raunser S

EMDB-16997:
Structure of the relaxed thick filament from FIB milled left ventricular mouse myofibrils - Crowns A1-A5
Method: subtomogram averaging / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Rees M, Bennett P, Gautel M, Raunser S

EMDB-18146:
In situ structures from relaxed cardiac myofibrils reveal the organization of the muscle thick filament
Method: subtomogram averaging / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Rees M, Bennett P, Gautel M, Raunser S

EMDB-18200:
Thin filament consensus map from FIB milled relaxed left ventricular mouse myofibrils
Method: subtomogram averaging / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Rees M, Bennett P, Gautel M, Raunser S

EMDB-18147:
Thin filament from FIB milled relaxed left ventricular mouse myofibrils
Method: subtomogram averaging / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Bennet P, Rees M, Gautel M, Raunser S

EMDB-18198:
Helical reconstruction of the relaxed thick filament from FIB milled left ventricular mouse myofibrils
Method: subtomogram averaging / : Tamborrini D, Raunser S

PDB-8q4g:
Thin filament from FIB milled relaxed left ventricular mouse myofibrils
Method: subtomogram averaging / : Tamborrini D, Wang Z, Wagner T, Tacke S, Stabrin M, Grange M, Kho AL, Bennet P, Rees M, Gautel M, Raunser S

PDB-8q6t:
Helical reconstruction of the relaxed thick filament from FIB milled left ventricular mouse myofibrils
Method: subtomogram averaging / : Tamborrini D, Raunser S

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Feb 9, 2022. New format data for meta-information of EMDB entries

New format data for meta-information of EMDB entries

  • Version 3 of the EMDB header file is now the official format.
  • The previous official version 1.9 will be removed from the archive.

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Oct 5, 2021. Nobel Prize for mechanically activated and temperature-gated ion channels

Nobel Prize for mechanically activated and temperature-gated ion channels

  • The Nobel Prize in Physiology or Medicine 2021 was awarded jointly to David Julius and Ardem Patapoutian "for their discoveries of receptors for temperature and touch."
  • EM Navigator can help to find cryo-EM structure data by both pioneers.

External links:The Nobel Prize in Physiology or Medicine 2021 - NobelPrize.org / Structure data by Ardem Patapoutian / Structure data by David Julius

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