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Showing 1 - 50 of 71 items for (author: fisher & di)

EMDB-44064:
Cryo-EM structure of phospholipase Cepsilon PH-COOH in complex with an antigen-binding fragment (composite structure)
Method: single particle / : Samassekou K, Lyon AM

EMDB-44065:
Cryo-EM structure of phospholipase Cepsilon PH-COOH in complex with an antigen-binding fragment (consensus map)
Method: single particle / : Samassekou K, Lyon AM

EMDB-44066:
Cryo-EM structure of phospholipase Cepsilon PH-COOH in complex with an antigen-binding fragment (focused map)
Method: single particle / : Samassekou K, Lyon AM

EMDB-44067:
Cryo-EM structure of phospholipase Cepsilon PH-COOH in complex with an antigen-binding fragment (focused map)
Method: single particle / : Samassekou K, Lyon AM

PDB-9b13:
Cryo-EM structure of phospholipase Cepsilon PH-COOH in complex with an antigen-binding fragment (composite structure)
Method: single particle / : Samassekou K, Lyon AM

EMDB-43927:
Cryo-EM structure of Phospholipase C epsilon PH-C terminus in complex with RhoA-GTP
Method: single particle / : Ohri V, Lyon AM

PDB-9ax5:
Cryo-EM structure of Phospholipase C epsilon PH-C terminus in complex with RhoA-GTP
Method: single particle / : Ohri V, Lyon AM

EMDB-41992:
Substrate-bound Cdc48, Class 1
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Lin HJL, Fisher ON, Price JC, Hill CP, Shen PS

EMDB-42025:
Cdc48-Shp1 unfolding native substrate, Class 4
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

EMDB-42032:
Cdc48-Shp1 unfolding native substrate, Class 5
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

EMDB-42038:
Cdc48-Shp1 unfolding native substrate, Class 2
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

EMDB-42039:
Cdc48-Shp1 unfolding native substrate, Class 6
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

EMDB-42042:
Cdc48-Shp1 unfolding native substrate, Class 7
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

EMDB-42043:
Cdc48-Shp1 unfolding native substrate, Class 8
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

EMDB-42047:
Cdc48-Shp1 unfolding native substrate, Class 9
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

EMDB-42057:
Cdc48-Shp1 unfolding native substrate, Class 3
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

EMDB-42076:
Cdc48-Shp1 unfolding native substrate, consensus structure
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

PDB-8u7t:
Substrate-bound Cdc48, Class 1
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Lin HJL, Fisher ON, Price JC, Hill CP, Shen PS

PDB-8u8i:
Cdc48-Shp1 unfolding native substrate, Class 4
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

PDB-8u9c:
Cdc48-Shp1 unfolding native substrate, Class 5
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

PDB-8u9p:
Cdc48-Shp1 unfolding native substrate, Class 2
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

PDB-8u9q:
Cdc48-Shp1 unfolding native substrate, Class 6
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

PDB-8u9z:
Cdc48-Shp1 unfolding native substrate, Class 7
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

PDB-8ua0:
Cdc48-Shp1 unfolding native substrate, Class 8
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

PDB-8ua1:
Cdc48-Shp1 unfolding native substrate, Class 9
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

PDB-8uaa:
Cdc48-Shp1 unfolding native substrate, Class 3
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

PDB-8ub4:
Cdc48-Shp1 unfolding native substrate, consensus structure
Method: single particle / : Cooney I, Schubert HL, Cedeno K, Carson R, Fisher ON, Price JC, Hill CP, Shen PS

EMDB-42247:
Degrader-induced complex between PTPN2 and CRBN-DDB1
Method: single particle / : Catalano C, Bratkowski M, Scapin G, Hao Q

PDB-8uh6:
Degrader-induced complex between PTPN2 and CRBN-DDB1
Method: single particle / : Catalano C, Bratkowski M, Scapin G, Hao Q

EMDB-41144:
Cryo-EM Structure of GPR61-G protein complex stabilized by scFv16
Method: single particle / : Lees JA, Dias JM, Han 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.

Related info.:EMDB header

External links:wwPDB to switch to version 3 of the EMDB data model

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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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Related info.:Covid-19 info / Mar 5, 2020. Novel coronavirus structure data

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