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Showing all 31 items for (author: kukulski & w)

EMDB-16872:
Subtomogram average of long bridges of the yeast ER-mitochondria encounter structure (ERMES). The population half containing longer bridge structures was averaged.
Method: subtomogram averaging / : Wozny MR, Di Luca A, Morado DR, Picco A, Khaddaj R, Campomanes P, Ivanovic L, Hoffmann PC, Miller EA, Vanni S, Kukulski W

EMDB-16873:
Subtomogram average of bridges of the yeast ER-mitochondria encounter structure (ERMES)
Method: subtomogram averaging / : Wozny MR, Di Luca A, Morado DR, Picco A, Khaddaj R, Campomanes P, Ivanovic L, Hoffmann PC, Miller EA, Vanni S, Kukulski W

EMDB-16871:
Subtomogram average of short bridges of the yeast ER-mitochondria encounter structure (ERMES). The population half containing shorter bridge structures was averaged.
Method: subtomogram averaging / : Wozny MR, Di Luca A, Morado DR, Picco A, Khaddaj R, Campomanes P, Ivanovic L, Hoffmann PC, Miller EA, Vanni S, Kukulski W

EMDB-15355:
Electron cryo-tomography of the ER-mitochondria encounter structure ERMES
Method: electron tomography / : Wozny MR, Di Luca A, Morado DR, Picco A, Khaddaj R, Campomanes P, Ivanovic L, Hoffmann PC, Miller EA, Vanni S, Kukulski W

EMDB-16454:
Electron cryo-tomography of HeLa cells expressing untagged Cidec
Method: electron tomography / : Ganeva I, Lim K, Boulanger J, Hoffmann PC, Muriel O, Borgeaud AC, Hagen WJH, Savage DB, Kukulski W

EMDB-16455:
Electron cryo-tomography of HeLa cells expressing Cidec-EGFP
Method: electron tomography / : Ganeva I, Lim K, Boulanger J, Hoffmann PC, Muriel O, Borgeaud AC, Hagen WJH, Savage DB, Kukulski W

EMDB-13195:
Cryo-ET of axons from human cerebral organoids, expressing membrane-targeted GFP
Method: electron tomography / : Hoffmann PC, Giandomenico SL, Ganeva I, Wozny MR, Sutcliffe M, Lancaster MA, Kukulski W

EMDB-13196:
Cryo-ET of axons from human cerebral organoids, expressing L1CAM-GFP
Method: electron tomography / : Hoffmann PC, Giandomenico SL, Ganeva I, Wozny MR, Sutcliffe M, Lancaster MA, Kukulski W

EMDB-13197:
Cryo-ET of axons grown from human cerebral organoids, expressing ESYT1-GFP
Method: electron tomography / : Hoffmann PC, Giandomenico SL, Ganeva I, Wozny MR, Sutcliffe M, Lancaster MA, Kukulski W

EMDB-10287:
CLEM of resin-embedded GFP-Scs2 yeast cell shown in Figure 2A of publication
Method: electron tomography / : Hoffmann PC, Bharat TAM, Wozny MR, Boulanger J, Miller EA, Kukulski W

EMDB-10299:
CLEM of resin-embedded GFP-Ist2 yeast cell shown in Figure 2B of publication
Method: electron tomography / : Hoffmann PC, Bharat TAM, Wozny MR, Boulanger J, Miller EA, Kukulski W

EMDB-10300:
CLEM of resin-embedded Tcb3-GFP yeast cell shown in Figure 2C of publication
Method: electron tomography / : Hoffmann PC, Bharat TAM, Wozny MR, Boulanger J, Miller EA, Kukulski W

EMDB-10301:
CLEM of resin-embedded scs2/22 tcb1/2/3 deletion mutant yeast cell expressing GFP-Ist2 shown in Figure 2F of publication
Method: electron tomography / : Hoffmann PC, Bharat TAM, Wozny MR, Boulanger J, Miller EA, Kukulski W

EMDB-10302:
CLEM of resin-embedded scs2/22 ist2 deletion mutant yeast cell expressing Tcb3-GFP; shown in Figure 2G of publication
Method: electron tomography / : Hoffmann PC, Bharat TAM, Wozny MR, Boulanger J, Miller EA, Kukulski W

EMDB-10303:
CLEM of resin-embedded scs2/22 ist2 tcb1/2/3 deletion mutant yeast cell expressing Sec63-RFP from plasmid, shown in Figure 2H of publication
Method: electron tomography / : Hoffmann PC, Bharat TAM, Wozny MR, Boulanger J, Miller EA, Kukulski W

EMDB-10304:
CLEM of resin-embedded rtn1 yop1 deletion mutant yeast cell expressing Tcb3-GFP, shown in Figure 3C of publication
Method: electron tomography / : Hoffmann PC, Bharat TAM, Wozny MR, Boulanger J, Miller EA, Kukulski W

EMDB-10306:
CLEM of resin-embedded rtn1 yop1 deletion mutant yeast cell expressing Tcb3-GFP, shown in Figure 3E of publication
Method: electron tomography / : Hoffmann PC, Bharat TAM, Wozny MR, Boulanger J, Miller EA, Kukulski W

EMDB-10308:
cryo-ET of cryo-FIB milled yeast cell in which scs2/22 ist2 are deleted; shown in Figures 5A and S3B of publication
Method: electron tomography / : Hoffmann PC, Bharat TAM, Wozny MR, Boulanger J, Miller EA, Kukulski W

EMDB-10309:
cryo-ET of cryo-FIB milled yeast cell, in which scs2/22 ist2 are deleted, with high intracellular calcium; shown in Figures 5C and S3F
Method: electron tomography / : Hoffmann PC, Bharat TAM, Wozny MR, Boulanger J, Miller EA, Kukulski W

EMDB-10310:
cryo-ET of cryo-FIB milled yeast cell, in which Tcb3-GFP is overexpressed and scs2/22 ist2 tcb1/2 are deleted; shown in Figure 6 of publication
Method: electron tomography / : Hoffmann PC, Bharat TAM, Wozny MR, Boulanger J, Miller EA, Kukulski W

EMDB-4483:
Correlative FM and ET of GFP-Bax in HeLa cells
Method: electron tomography / : Ader NR, Hoffmann PC, Ganeva I, Borgeaud AC, Wang C, Youle RJ, Kukulski W

EMDB-4484:
Correlative FM and ET of GFP-Bax in HCT116 cells
Method: electron tomography / : Ader NR, Hoffmann PC, Ganeva I, Borgeaud AC, Wang C, Youle RJ, Kukulski W

EMDB-4486:
Correlative FM and cryo-ET of GFP-Bax in HeLa cells
Method: electron tomography / : Ader NR, Hoffmann PC, Ganeva I, Borgeaud AC, Wang C, Youle RJ, Kukulski W

EMDB-4490:
cryo-ET of cryo-FIB milled HeLa cells overexpressing GFP-Bax
Method: electron tomography / : Ader NR, Hoffmann PC, Ganeva I, Borgeaud AC, Wang C, Youle RJ, Kukulski W

EMDB-4491:
cryo-ET of cryo-FIB milled HeLa cell
Method: electron tomography / : Ader NR, Hoffmann PC, Ganeva I, Borgeaud AC, Wang C, Youle RJ, Kukulski W

EMDB-4492:
cryo-ET of cryo-FIB milled Bax/Bak double knockout HCT116 cells stably expressing GFP-Bax
Method: electron tomography / : Ader NR, Hoffmann PC, Ganeva I, Borgeaud AC, Wang C, Youle RJ, Kukulski W

EMDB-4305:
Correlative cryo-FM and Cryo-ET of vitreous sections of yeast cells
Method: electron tomography / : Bharat TAM, Hoffmann PC, Kukulski W

EMDB-8166:
Structure of the S. cerevisiae alpha-mannosidase 1
Method: single particle / : Schneider S, Kosinski J, Jakobi AJ, Hagen WJH, Sachse C

EMDB-8167:
Structure of S. cerevesiae mApe1 dodecamer
Method: single particle / : Sachse C, Bertipaglia C

PDB-5jm0:
Structure of the S. cerevisiae alpha-mannosidase 1
Method: single particle / : Schneider S, Kosinski J, Jakobi AJ, Hagen WJH, Sachse C

PDB-5jm9:
Structure of S. cerevesiae mApe1 dodecamer
Method: single particle / : Sachse C, Bertipaglia C

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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.
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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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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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