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Showing all 17 items for (author: vadim & v. & mesyanzhinov)

PDB-3j0h:
Fitting of the bacteriophage phiKZ gp29PR structure into the cryo-EM density map of the phiKZ extended tail sheath
Method: single particle / : Aksyuk AA, Fokine A, Kurochkina LP, Mesyanzhinov VV, Rossmann MG

PDB-3j0i:
Fitting of the phiKZ gp29PR structure into the cryo-EM density map of the phiKZ polysheath
Method: single particle / : Aksyuk AA, Fokine A, Kurochkina LP, Mesyanzhinov VV, Rossmann MG

PDB-3h3w:
Fitting of the gp6 crystal structure into 3D cryo-EM reconstruction of bacteriophage T4 dome-shaped baseplate
Method: single particle / : Aksyuk AA, Leiman PG, Shneider MM, Mesyanzhinov VV, Rossmann MG

PDB-3h3y:
Fitting of the gp6 crystal structure into 3D cryo-EM reconstruction of bacteriophage T4 star-shaped baseplate
Method: single particle / : Aksyuk AA, Leiman PG, Shneider MM, Mesyanzhinov VV, Rossmann MG

PDB-3foh:
Fitting of gp18M crystal structure into 3D cryo-EM reconstruction of bacteriophage T4 extended tail
Method: single particle / : Aksyuk AA, Leiman PG, Kurochkina LP, Shneider MM, Kostyuchenko VA, Mesyanzhinov VV, Rossmann MG

PDB-3foi:
Fitting of gp18M crystal structure into 3D cryo-EM reconstruction of bacteriophage T4 contracted tail
Method: single particle / : Aksyuk AA, Leiman PG, Kurochkina LP, Shneider MM, Kostyuchenko VA, Mesyanzhinov VV, Rossmann MG

PDB-2fl8:
Fitting of the gp10 trimer structure into the cryoEM map of the bacteriophage T4 baseplate in the hexagonal conformation.
Method: single particle / : Leiman PG, Shneider MM, Mesyanzhinov VV, Rossmann MG

PDB-2fl9:
Evolution of bacteriophage tails: Structure of T4 gene product 10
Method: single particle / : Leiman PG, Shneider MM, Mesyanzhinov VV, Rossmann MG

PDB-2bsg:
The modeled structure of fibritin (gpwac) of bacteriophage T4 based on cryo-EM reconstruction of the extended tail of bacteriophage T4
Method: helical / : Kostyuchenko VA, Chipman PR, Leiman PG, Arisaka F, Mesyanzhinov VV, Rossmann MG

PDB-1zku:
Fitting of the gp9 structure in the EM density of bacteriophage T4 extended tail
Method: single particle / : Kostyuchenko VA

PDB-1tja:
Fitting of gp8, gp9, and gp11 into the cryo-EM reconstruction of the bacteriophage T4 contracted tail
Method: single particle / : Leiman PG, Chipman PR, Kostyuchenko VA, Mesyanzhinov VV, Rossmann MG

PDB-1pdf:
Fitting of gp11 crystal structure into 3D cryo-EM reconstruction of bacteriophage T4 baseplate-tail tube complex
Method: single particle / : Kostyuchenko VA, Leiman PG, Chipman PR, Kanamaru S, van Raaij MJ, Arisaka F, Mesyanzhinov VV, Rossmann MG

PDB-1pdi:
Fitting of the C-terminal part of the short tail fibers into the cryo-EM reconstruction of T4 baseplate
Method: single particle / : Kostyuchenko VA, Leiman PG, Chipman PR, Kanamaru S, van Raaij MJ, Arisaka F, Mesyanzhinov VV, Rossmann MG

PDB-1pdj:
Fitting of gp27 into cryoEM reconstruction of bacteriophage T4 baseplate
Method: single particle / : Kostyuchenko VA, Leiman PG, Chipman PR, Kanamaru S, van Raaij MJ, Arisaka F, Mesyanzhinov VV, Rossmann MG

PDB-1pdl:
Fitting of gp5 in the cryoEM reconstruction of the bacteriophage T4 baseplate
Method: single particle / : Kostyuchenko VA, Leiman PG, Chipman PR, Kanamaru S, van Raaij MJ, Arisaka F, Mesyanzhinov VV, Rossmann MG

PDB-1pdm:
Fitting of gp8 structure into the cryoEM reconstruction of the bacteriophage T4 baseplate
Method: single particle / : Kostyuchenko VA, Leiman PG, Chipman PR, Kanamaru S, van Raaij MJ, Arisaka F, Mesyanzhinov VV, Rossmann MG

PDB-1pdp:
Fitting of gp9 structure into the bacteriophage T4 baseplate cryoEM reconstruction
Method: single particle / : Kostyuchenko VA, Leiman PG, Chipman PR, Kanamaru S, van Raaij MJ, Arisaka F, Mesyanzhinov VV, Rossmann MG

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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

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  • 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."
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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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