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Showing 1 - 50 of 265 items for (author: bartesaghi & a)

EMDB-29172:
Cryo-EM structure of Cryptococcus neoformans trehalose-6-phosphate synthase homotetramer in complex with uridine diphosphate and glucose-6-phosphate
Method: single particle / : Washington EJ, Brennan RG

PDB-8fhw:
Cryo-EM structure of Cryptococcus neoformans trehalose-6-phosphate synthase homotetramer in complex with uridine diphosphate and glucose-6-phosphate
Method: single particle / : Washington EJ, Brennan RG

EMDB-41205:
Cryo-electron tomography reconstruction of mammalian 80S ribosome in the non-rotated state with P, A/T-site tRNA, and eEF1A cofactor from EMPIAR-10064 dataset by constrained classification
Method: subtomogram averaging / : Zhou Y, Liu HF, Bartesaghi A

EMDB-41207:
Cryo-electron tomography reconstruction of mammalian 80S ribosome from EMPIAR-10064 in the translocation intermediates (TI) state with eEF2 cofactor and closed L1 by constrained classification.
Method: subtomogram averaging / : Zhou Y, Liu HF, Bartesaghi A

EMDB-41210:
Cryo-electron tomography reconstruction of mammalian 80S ribosome in the translocation intermediates (TI) state with eEF2 cofactor and open L1 from EMPIAR-10064 dataset by constrained classification.
Method: subtomogram averaging / : Zhou Y, Liu HF, Bartesaghi A

EMDB-41211:
Cryo-electron tomography reconstruction of mammalian 80S ribosome in the non-rotated state with P, A/T-site tRNA from EMPIAR-10064 dataset by constrained classification.
Method: subtomogram averaging / : Zhou Y, Liu HF, Bartesaghi A

EMDB-41212:
Cryo-electron tomography reconstruction of mammalian 80S ribosome in the non-rotated state with E, P, A/T-site tRNA and eEF1A cofactor from EMPIAR-10064 dataset by constrained classification.
Method: subtomogram averaging / : Zhou Y, Liu HF, Bartesaghi A

EMDB-41220:
Cryo-electron tomography reconstruction of M. pneumoniae 70S ribosome in decoding state with EF-Tu-tRNA and P-site tRNA from EMPIAR-10499 dataset by constrained classification.
Method: subtomogram averaging / : Zhou Y, Liu HF, Bartesaghi A

EMDB-41221:
Cryo-electron tomography reconstruction of M. pneumoniae 70S ribosome in classical non-rotated state with L1 open, obtained from EMPIAR-10499 dataset by constrained classification
Method: subtomogram averaging / : Zhou Y, Liu HF, Bartesaghi A

EMDB-41222:
Cryo-electron tomography reconstruction of M. pneumoniae 70S ribosome in the classical non-rotated state with half-closed L1 stalk, obtained from EMPIAR-10499 dataset by constrained classification
Method: subtomogram averaging / : Zhou Y, Liu HF, Bartesaghi A

EMDB-41223:
Cryo-electron tomography reconstruction of 80S ribosome in non-rotated state class 1, obtained from the EMPIAR-10987 dataset by constrained 3D classification.
Method: subtomogram averaging / : Zhou Y, Liu HF, Bartesaghi A

EMDB-41224:
Cryo-electron tomography reconstruction of 80S ribosome in non-rotated state class 2, obtained from the EMPIAR-10987 dataset by constrained 3D classification.
Method: subtomogram averaging / : Zhou Y, Liu HF, Bartesaghi A

EMDB-41225:
Cryo-electron tomography reconstruction of 80S ribosome in non-rotated state class 3, obtained from the EMPIAR-10987 dataset by constrained 3D classification.
Method: subtomogram averaging / : Zhou Y, Liu HF, Bartesaghi A

EMDB-41226:
Cryo-electron tomography reconstruction of 80S ribosome in non-rotated decoding state class 4, obtained from the EMPIAR-10987 dataset by constrained 3D classification.
Method: subtomogram averaging / : Zhou Y, Liu HF, Bartesaghi A

EMDB-41227:
Cryo-electron tomography reconstruction of 80S ribosome in Translocation-intermediate-POST-3 state class 5, obtained from the EMPIAR-10987 dataset by constrained 3D classification.
Method: subtomogram averaging / : Zhou Y, Liu HF, Bartesaghi A

EMDB-41196:
A 3.2 Angstrom structure of HIV-1 CA-SP1 from 5 tomograms in EMPIAR-10164 dataset by single-particle cryo-electron tomography
Method: subtomogram averaging / : Liu HF, Zhou Y, Bartesaghi A

EMDB-41197:
A 3 Angstrom structure of HIV-1 CA-SP1 from EMPIAR-10164 dataset by single-particle cryo-electron tomography
Method: subtomogram averaging / : Liu HF, Zhou Y, Bartesaghi A

EMDB-41199:
1.8 Angstrom mouse heavy chain apoferritin from EMPIAR-11273 dataset by single-particle cryo-electron tomography
Method: subtomogram averaging / : Liu HF, Zhou Y, Bartesaghi A

EMDB-27701:
Focused map (monomer A) for Arabidopsis SPY in complex with GDP-fucose
Method: single particle / : Kumar S, Zhou Y, Dillard L, Borgnia MJ, Bartesaghi A, Zhou P

EMDB-27702:
Focused map (monomer B) for Arabidopsis SPY in complex with GDP-fucose
Method: single particle / : Kumar S, Zhou Y, Lucas D, Borgnia MJ, Bartesaghi A, Zhou P

EMDB-27082:
Alpha-synuclein fibril from spontaneous control
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

PDB-8cyr:
Alpha-synuclein fibril from spontaneous control
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

EMDB-27083:
CryoEM structures of amplified alpha-synuclein fibril class B type II with extended core from DLB case I
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

EMDB-27084:
CryoEM structures of amplified alpha-synuclein fibril class A type I with extended core from DLB case I
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

EMDB-27085:
CryoEM structures of amplified alpha-synuclein fibril class B mixed type I/II with extended core from DLB case II
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

EMDB-27086:
CryoEM structures of amplified alpha-synuclein fibril class B type I with compact core from DLB case III
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

EMDB-27087:
CryoEM structure of amplified alpha-synuclein fibril class A type I with compact core from DLB case III
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

EMDB-27088:
CryoEM structure of amplified alpha-synuclein fibril class B mixed type I/II with extended core from DLB case V
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

EMDB-27089:
CryoEM structure of amplified alpha-synuclein fibril class B type I with extended core from DLB case VII
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

EMDB-27090:
CryoEM structure of amplified alpha-synuclein fibril class B type II with extended core from DLB case VII
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

EMDB-27091:
CryoEM structure of amplified alpha-synuclein fibril class A type I with extended core from DLB case VII
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

EMDB-27092:
CryoEM structure of amplified alpha-synuclein fibril class B type I with extended core from DLB case X
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

EMDB-27093:
CryoEM structure of amplified alpha-synuclein fibril class A type I with extended core from DLB case X
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

PDB-8cys:
CryoEM structures of amplified alpha-synuclein fibril class B type II with extended core from DLB case I
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

PDB-8cyt:
CryoEM structures of amplified alpha-synuclein fibril class A type I with extended core from DLB case I
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

PDB-8cyv:
CryoEM structures of amplified alpha-synuclein fibril class B mixed type I/II with extended core from DLB case II
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

PDB-8cyw:
CryoEM structures of amplified alpha-synuclein fibril class B type I with compact core from DLB case III
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

PDB-8cyx:
CryoEM structure of amplified alpha-synuclein fibril class A type I with compact core from DLB case III
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

PDB-8cyy:
CryoEM structure of amplified alpha-synuclein fibril class B mixed type I/II with extended core from DLB case V
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

PDB-8cz0:
CryoEM structure of amplified alpha-synuclein fibril class B type I with extended core from DLB case VII
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

PDB-8cz1:
CryoEM structure of amplified alpha-synuclein fibril class B type II with extended core from DLB case VII
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

PDB-8cz2:
CryoEM structure of amplified alpha-synuclein fibril class A type I with extended core from DLB case VII
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

PDB-8cz3:
CryoEM structure of amplified alpha-synuclein fibril class B type I with extended core from DLB case X
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

PDB-8cz6:
CryoEM structure of amplified alpha-synuclein fibril class A type I with extended core from DLB case X
Method: helical / : Zhou Y, Sokratian A, Xu E, Viverette E, Dillard L, Yuan Y, Li JY, Matarangas A, Bouvette J, Borgnia M, Bartesaghi A, West A

EMDB-40273:
CryoEM structure of VRC01-CH848.0358.80
Method: single particle / : Henderson R, Zhou Y, Stalls V, Bartesaghi B, Acharya P

EMDB-40274:
CryoEM structure of VRC01-CH848.0836.10
Method: single particle / : Henderson R, Zhou Y, Stalls V, Bartesaghi B, Acharya P

EMDB-40275:
CryoEM structure of DH270.6-CH848.0526.25
Method: single particle / : Henderson R, Zhou Y, Stalls V, Bartesaghi B, Acharya P

EMDB-40277:
CryoEM structure of DH270.6-CH848.10.17
Method: single particle / : Henderson R, Zhou Y, Stalls V, Bartesaghi B, Acharya P

EMDB-40278:
CryoEM structure of DH270.5-CH848.10.17
Method: single particle / : Henderson R, Zhou Y, Stalls V, Bartesaghi B, Acharya P

EMDB-40279:
CryoEM structure of VRC01-CH848.10.17
Method: single particle / : Henderson R, Zhou Y, Stalls V, Bartesaghi B, Acharya P

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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."
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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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