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Showing all 39 items for (author: cahill & j)

EMDB-47503:
Human ASIC1a at pH 8.5 with domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47504:
Human ASIC1a at pH 7.5 with domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47505:
Human ASIC1a at pH 7.5 with partial transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47506:
Human ASIC1a at pH 7.5 with linear transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47507:
Human ASIC1a at pH 6.5 with linear transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47508:
Human ASIC1a at pH 5.7 with domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47509:
Human ASIC1a at pH 5.7 with linear transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47510:
Human ASIC1a at pH 5.7 with rotated, domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47511:
Human ASIC1a at pH 7.5 in complex with MitTx
Method: single particle / : Hartfield KA, Yoshioka C, Cahill J, Baconguis I

EMDB-47512:
Human ASIC1a at pH 6.5 in complex with MitTx
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-47513:
Human ASIC1a at pH 8.5, T26V mutation
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4a:
Human ASIC1a at pH 8.5 with domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4b:
Human ASIC1a at pH 7.5 with domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4c:
Human ASIC1a at pH 7.5 with partial transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4d:
Human ASIC1a at pH 7.5 with linear transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4e:
Human ASIC1a at pH 6.5 with linear transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4f:
Human ASIC1a at pH 5.7 with domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4g:
Human ASIC1a at pH 5.7 with linear transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4h:
Human ASIC1a at pH 5.7 with rotated, domain-swapped transmembrane domain
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4i:
Human ASIC1a at pH 7.5 in complex with MitTx
Method: single particle / : Hartfield KA, Yoshioka C, Cahill J, Baconguis I

PDB-9e4j:
Human ASIC1a at pH 6.5 in complex with MitTx
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

PDB-9e4k:
Human ASIC1a at pH 8.5, T26V mutation
Method: single particle / : Hartfield KA, Cahill J, Baconguis I

EMDB-55245:
Herpes simplex virus 2 delta28-73 glycoprotein C ectodomain in complex with C3b
Method: single particle / : Rojas Rechy MH, Atanasiu D, Hook LM, Cairns MT, Saw WT, Cahill A, Guo Z, Calabrese AN, Ranson NA, Friedman HM, Cohen GH, Fontana J

EMDB-55293:
Herpes simplex virus 2 delta28-73 glycoprotein C (focus classification) ectodomain in complex with C3b
Method: single particle / : Rojas Rechy MH, Atanasiu D, Hook LM, Cairns MT, Saw WT, Cahill A, Guo Z, Calabrese AN, Ranson NA, Friedman HM, Cohen GH, Fontana J

PDB-9sv8:
Herpes simplex virus 2 delta28-73 glycoprotein C ectodomain in complex with C3b
Method: single particle / : Rojas Rechy MH, Atanasiu D, Hook LM, Cairns MT, Saw WT, Cahill A, Guo Z, Calabrese AN, Ranson NA, Friedman HM, Cohen GH, Fontana J

EMDB-51930:
BAM-hinge (LVPR)
Method: single particle / : Machin JM, Ranson NA

EMDB-51931:
BAM-hinge (GSGS)
Method: single particle / : Machin JM, Ranson NA

EMDB-51933:
BAM-hinge (LVPR) suppressor (T434A)
Method: single particle / : Machin JM, Ranson NA

PDB-9h84:
BAM-hinge (LVPR)
Method: single particle / : Machin JM, Ranson NA

PDB-9h85:
BAM-hinge (GSGS)
Method: single particle / : Machin JM, Ranson NA

PDB-9h89:
BAM-hinge (LVPR) suppressor (T434A)
Method: single particle / : Machin JM, Ranson NA

EMDB-22410:
Cryo-electron tomography of HIV-1 integrase mutant, W235E
Method: electron tomography / : Adams LJ, Steven AC

EMDB-22411:
Cryo-electron tomography of HIV-1 integrase mutant, W235E
Method: electron tomography / : Adams LJ, Steven AC

EMDB-9375:
Stabilized beta-arrestin 1-V2T subcomplex of a GPCR-G protein-beta-arrestin mega-complex
Method: single particle / : Nguyen AH, Thomsen ARB

EMDB-9376:
B2V2R-Gs protein subcomplex of a GPCR-G protein-beta-arrestin mega-complex
Method: single particle / : Nguyen AH, Thomsen ARB

EMDB-9377:
Structure of a GPCR-G protein-beta-arrestin mega-complex
Method: single particle / : Nguyen AH, Thomsen ARB, Cahill TJ, des Georges A, Lefkowitz RJ

PDB-6ni2:
Stabilized beta-arrestin 1-V2T subcomplex of a GPCR-G protein-beta-arrestin mega-complex
Method: single particle / : Nguyen AH, Thomsen ARB, Cahill TJ, des Georges A, Lefkowitz RJ

PDB-6ni3:
B2V2R-Gs protein subcomplex of a GPCR-G protein-beta-arrestin mega-complex
Method: single particle / : Nguyen AH, Thomsen ARB, Cahill TJ, des Georges A, Lefkowitz RJ

EMDB-8543:
3D negative stain EM structure of Pom152, the major component of the membrane ring of the nuclear pore complex
Method: single particle / : Upla P, Kim SJ, Sampathkumar P, Dutta K, Cahill SM, Chemmama IE, Williams R, Bonanno JB, Rice WJ, Stokes DL, Cowburn D, Almo SC, Sali A, Rout MP, Fernandez-Martinez J

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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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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

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  • 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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