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Showing 1 - 50 of 122 items for (author: ford & hl)

EMDB-75437:
Importin-9 bound to ETS homologous factor (EHF)
Method: single particle / : Bernardes NE, Lankford K, McConville M, Chook YM, Liszczak G

PDB-10sm:
Importin-9 bound to ETS homologous factor (EHF)
Method: single particle / : Bernardes NE, Lankford K, McConville M, Chook YM, Liszczak G

EMDB-55755:
Structure of the human inner kinetochore CCAN bound to a 3' CENP-A nucleosome
Method: single particle / : Yu C, Barford D

EMDB-55756:
Structure of the human inner kinetochore CCAN bound to a 5' CENP-A nucleosome
Method: single particle / : Yu C, Barford D

EMDB-55757:
Structure of the human inner kinetochore CCAN bound to DNA
Method: single particle / : Yu C, Muir KW, Barford D

EMDB-55758:
Structure of the human inner kinetochore CCAN bound to a mono-CENP-A nucleosome
Method: single particle / : Yu C, Barford D

EMDB-55759:
Structure of the human inner kinetochore CCAN bound to a di-CENP-A nucleosome
Method: single particle / : Yu C, Barford D

EMDB-56612:
Structure of the human inner kinetochore CCAN bound to a di-CENP-A nucleosome, consensus map
Method: single particle / : Yu C, Barford D

EMDB-56683:
Structure of the human inner kinetochore CCAN and CENP-C bound to DNA
Method: single particle / : Yu C, Barford D

PDB-28op:
Structure of the human inner kinetochore CCAN and CENP-C bound to DNA
Method: single particle / : Yu C, Barford D

PDB-9taw:
Structure of the human inner kinetochore CCAN bound to DNA
Method: single particle / : Yu C, Muir KW, Barford D

PDB-9tax:
Structure of the human inner kinetochore CCAN bound to a mono-CENP-A nucleosome
Method: single particle / : Yu C, Barford D

PDB-9tay:
Structure of the human inner kinetochore CCAN bound to a di-CENP-A nucleosome
Method: single particle / : Yu C, Barford D

EMDB-76230:
Structure of TMEM106B doublet from patient brain derived lysosomes
Method: subtomogram averaging / : Fernandez MF, Mosalaganti S

EMDB-76248:
Structure of TMEM106B singlet from patient brain derived lysosomes
Method: subtomogram averaging / : Fernandez MF, Mosalaganti S

EMDB-54576:
Consensus cryo-EM map of the Saccharomyces cerevisiae KMN junction complex lacking the Mis12c(Mtw1c) head 2 domain
Method: single particle / : Turner NN, Barford DB

EMDB-54577:
Mutlbody refinement cryo-EM density map of the base of the Saccharomyces cerevisiae KMN junction complex
Method: single particle / : Turner NN, Barford DB

EMDB-54578:
Multibody refinement cryo-EM density map of the apex of the Saccharomyces cerevisiae KMN junction complex
Method: single particle / : Turner NN, Barford DB

EMDB-54579:
Composite cryo-EM density map of the Saccharomyces cerevisiae KMN junction complex lacking the Mis12c(Mtw1c) head 2 domain
Method: single particle / : Turner NN, Barford D

EMDB-54586:
Multibody refinement cryo-EM density map of the base of the Saccharomyces cerevisiae KMN junction complex with Mis12c(Mtw1c) head 2 domain resolved
Method: single particle / : Turner NN, Barford D

EMDB-54602:
Cryo-EM structure of the Saccharomyces cerevisiae KMN junction complex containing the Mis12c(Mtw1c) head 2 domain
Method: single particle / : Turner NN, Barford D

PDB-9s4q:
Cryo-EM structure of the Saccharomyces cerevisiae KMN junction complex lacking the Mis12c(Mtw1c) head 2 domain
Method: single particle / : Turner NN, Barford D

PDB-9s53:
Cryo-EM structure of the base of the Saccharomyces cerevisiae KMN junction complex containing the Mis12c(Mtw1c) head 2 domain
Method: single particle / : Turner NN, Barford D

PDB-9s5n:
Cryo-EM structure of the Saccharomyces cerevisiae KMN junction complex containing the Mis12c(Mtw1c) head 2 domain
Method: single particle / : Turner NN, Barford D

EMDB-72178:
Cereblon Ternary Complex with Blimp1 and compound 5
Method: single particle / : Watson ER, Lander GC

PDB-9q33:
Cereblon Ternary Complex with Blimp1 and compound 5
Method: single particle / : Watson ER

EMDB-48770:
PP2A Holoenzyme with B55 subunit
Method: single particle / : Shi S, Li X, Alderman C, Huang W, Foulon N, Rossi J, Cui S, Taylor D, Ford HL, Zhao R

EMDB-46649:
Cryo-EM structure of the BG505 SOSIPv2
Method: single particle / : DeLaitsch AT, Bjorkman PJ

PDB-9d8v:
Cryo-EM structure of the BG505 SOSIPv2
Method: single particle / : DeLaitsch AT, Bjorkman PJ

EMDB-48798:
PP2A-B55 Holoenzyme with Eya3
Method: single particle / : Shi S, Alderman C, Huang W, Zhao R

EMDB-48799:
PP2A-B55 Holoenzyme with B55i
Method: single particle / : Shi S, Alderman C, Huang W, Zhao R

EMDB-42363:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 05_B08 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

EMDB-42364:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 01_D03 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

EMDB-42365:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 04_A06 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

EMDB-42366:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 04_A06 and PGDM1400 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

PDB-8ulr:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 05_B08 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

PDB-8uls:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 01_D03 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

PDB-8ult:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 04_A06 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

PDB-8ulu:
Cryo-EM structure of the BG505 SOSIPv2 in complex with bNAb 04_A06 and PGDM1400 Fabs
Method: single particle / : DeLaitsch AT, Bjorkman PJ

EMDB-45448:
Double-stacked pore and prepore-like complex (C1 symmetry)
Method: single particle / : Johnstone BA, Christie MP, Morton CJ, Brown HG, Hanssen E, Parker MW

EMDB-45449:
Double-stacked pore and prepore-like complex (C30 symmetry)
Method: single particle / : Johnstone BA, Christie MP, Morton CJ, Brown HG, Hanssen E, Parker MW

EMDB-45450:
EaCDCL pore complex (C1 symmetry)
Method: single particle / : Johnstone BA, Christie MP, Morton CJ, Brown HG, Hanssen E, Parker MW

EMDB-45451:
Cryo-EM structure of the EaCDCL pore
Method: single particle / : Johnstone BA, Christie MP, Morton CM, Brown HG, Hanssen E, Parker MW

EMDB-45452:
Prepore-like EaCDCL short oligomer (C1 symmetry)
Method: single particle / : Johnstone BA, Christie MP, Morton CJ, Brown HG, Hanssen E, Parker MW

EMDB-45453:
Cryo-EM structure of the prepore-like EaCDCL short oligomer
Method: single particle / : Johnstone BA, Christie MP, Morton CM, Brown HG, Hanssen E, Parker MW

EMDB-45454:
EaCDCL pore complex, non-stacked control (C1)
Method: single particle / : Johnstone BA, Christie MP, Morton CJ, Brown HG, Hanssen E, Parker MW

EMDB-45455:
EaCDCL pore complex, non-stacked control (C30 symmetry)
Method: single particle / : Johnstone BA, Christie MP, Morton CJ, Brown HG, Hanssen E, Parker MW

EMDB-42164:
The CryoEM structure of the high affinity Carbon monoxide dehydrogenase from Mycobacterium smegmatis
Method: single particle / : Grinter R, Venugopal H, Greening C, Gillett D

PDB-8uem:
The CryoEM structure of the high affinity Carbon monoxide dehydrogenase from Mycobacterium smegmatis
Method: single particle / : Grinter R, Venugopal H, Greening C, Gillett D

EMDB-51190:
High-resolution structure of the Anaphase-promoting complex/cyclosome (APC/C) bound to co-activator Cdh1
Method: single particle / : Hoefler A, Yu J, Chang L, Zhang Z, Yang J, Boland A, Barford D

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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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