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Showing 1 - 50 of 108 items for (author: vanni & s)

EMDB-16780:
CryoEM structure of AL55 amyloid fibrils extracted from the kidney of an AL amyloidosis patient.
Method: helical / : Puri S, Schulte T, Chaves-Sanjuan A, Ricagno S

PDB-8cpe:
CryoEM structure of AL55 amyloid fibrils extracted from the kidney of an AL amyloidosis patient.
Method: helical / : Puri S, Schulte T, Chaves-Sanjuan A, Ricagno S

EMDB-27269:
Cryo-EM structure of human DELE1 in oligomeric form
Method: single particle / : Yang J, Lander GC

PDB-8d9x:
Cryo-EM structure of human DELE1 in oligomeric form
Method: single particle / : Yang J, Lander GC

EMDB-15715:
Mouse heavy chain apoferritin in plunge-frozen vitreous ice
Method: single particle / : Bongiovanni G, Harder OF, Voss JM, Drabbels M, Lorenz UJ

EMDB-15721:
Mouse heavy chain apoferritin after laser melting and revitrification
Method: single particle / : Bongiovanni G, Harder OF, Voss JM, Drabbels M, Lorenz UJ

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-28581:
Structure of mitochondrial complex I from Drosophila melanogaster, Flexible-class 1
Method: single particle / : Padavannil A, Letts JA

EMDB-28582:
Structure of mitochondrial complex I from Drosophila melanogaster, Helix-locked state
Method: single particle / : Padavannil A, Letts JA

PDB-8esw:
Structure of mitochondrial complex I from Drosophila melanogaster, Flexible-class 1
Method: single particle / : Padavannil A, Letts JA

PDB-8esz:
Structure of mitochondrial complex I from Drosophila melanogaster, Helix-locked state
Method: single particle / : Padavannil A, Letts JA

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-15619:
Mouse heavy chain apoferritin in plunge-frozen vitreous ice
Method: single particle / : Bongiovanni G, Harder OF, Drabbels M, Lorenz UJ

EMDB-15620:
Mouse heavy chain apoferritin in vitreous ice after laser-melting and revitrification
Method: single particle / : Bongiovanni G, Harder OF, Drabbels M, Lorenz UJ

EMDB-15007:
Structure of SNAPc containing Pol II pre-initiation complex bound to U1 snRNA promoter (OC)
Method: single particle / : Rengachari S, Schilbach S, Kaliyappan T, Gouge J, Zumer K, Schwarz J, Urlaub H, Dienemann C, Vannini A, Cramer P

PDB-7zx8:
Structure of SNAPc containing Pol II pre-initiation complex bound to U1 snRNA promoter (OC)
Method: single particle / : Rengachari S, Schilbach S, Kaliyappan T, Gouge J, Zumer K, Schwarz J, Urlaub H, Dienemann C, Vannini A, Cramer P

EMDB-14996:
Structure of SNAPc:TBP-TFIIA-TFIIB sub-complex bound to U5 snRNA promoter
Method: single particle / : Rengachari S, Schilbach S, Kaliyappan T, Gouge J, Zumer K, Schwarz J, Urlaub H, Dienemann C, Vannini A, Cramer P

EMDB-14997:
Structure of SNAPc containing Pol II pre-initiation complex bound to U5 snRNA promoter (CC)
Method: single particle / : Rengachari S, Schilbach S, Kaliyappan T, Gouge J, Zumer K, Schwarz J, Urlaub H, Dienemann C, Vannini A, Cramer P

EMDB-15006:
Structure of SNAPc containing Pol II pre-initiation complex bound to U1 snRNA promoter (CC)
Method: single particle / : Rengachari S, Schilbach S, Kaliyappan T, Gouge J, Zumer K, Schwarz J, Urlaub H, Dienemann C, Vannini A, Cramer P

EMDB-15009:
Structure of SNAPc containing Pol II pre-initiation complex bound to U1 snRNA promoter (OC)
Method: single particle / : Rengachari S, Schilbach S, Kaliyappan T, Gouge J, Zumer K, Schwarz J, Urlaub H, Dienemann C, Vannini A, Cramer P

PDB-7zwc:
Structure of SNAPc:TBP-TFIIA-TFIIB sub-complex bound to U5 snRNA promoter
Method: single particle / : Rengachari S, Schilbach S, Kaliyappan T, Gouge J, Zumer K, Schwarz J, Urlaub H, Dienemann C, Vannini A, Cramer P

PDB-7zwd:
Structure of SNAPc containing Pol II pre-initiation complex bound to U5 snRNA promoter (CC)
Method: single particle / : Rengachari S, Schilbach S, Kaliyappan T, Gouge J, Zumer K, Schwarz J, Urlaub H, Dienemann C, Vannini A, Cramer P

PDB-7zx7:
Structure of SNAPc containing Pol II pre-initiation complex bound to U1 snRNA promoter (CC)
Method: single particle / : Rengachari S, Schilbach S, Kaliyappan T, Gouge J, Zumer K, Schwarz J, Urlaub H, Dienemann C, Vannini A, Cramer P

PDB-7zxe:
Structure of SNAPc containing Pol II pre-initiation complex bound to U1 snRNA promoter (OC)
Method: single particle / : Rengachari S, Schilbach S, Kaliyappan T, Gouge J, Zumer K, Schwarz J, Urlaub H, Dienemann C, Vannini A, Cramer P

EMDB-14726:
Cryo-EM structure of ex vivo AA amyloid from renal tissue of a short hair cat deceased in a shelter
Method: helical / : Schulte T, Chaves-Sanjuan A, Ricagno S

PDB-7zh7:
Cryo-EM structure of ex vivo AA amyloid from renal tissue of a short hair cat deceased in a shelter
Method: helical / : Schulte T, Chaves-Sanjuan A, Ricagno S

EMDB-25882:
Cryo-EM structure of respiratory super-complex CI+III2 from Tetrahymena thermophila
Method: single particle / : Zhou L, Maldonado M, Padavannil A, Guo F, Letts JA

EMDB-32325:
Cryo-EM structure of Tetrahymena thermophila mitochondrial complex IV, composite dimer model
Method: single particle / : Zhou L, Maldonado M, Padavannil A, Letts J

EMDB-32631:
Cryo-EM structure of ATP synthase dimer from Tetrahymena thermophila
Method: single particle / : Zhou L, Maldonado M, Padavannil A, Guo F, Letts JA

EMDB-32632:
Cryo-EM structure of ATP synthase dimer from Tetrahymena thermophila
Method: single particle / : Zhou L, Maldonado M, Padavannil A, Guo F, Letts JA

PDB-7tgh:
Cryo-EM structure of respiratory super-complex CI+III2 from Tetrahymena thermophila
Method: single particle / : Zhou L, Maldonado M, Padavannil A, Guo F, Letts JA

PDB-7w5z:
Cryo-EM structure of Tetrahymena thermophila mitochondrial complex IV, composite dimer model
Method: single particle / : Zhou L, Maldonado M, Padavannil A, Letts J

EMDB-13831:
Cryo-EM structure of Ty3 retrotransposon targeting a TFIIIB-bound tRNA gene
Method: single particle / : Abascal-Palacios G, Jochem L, Pla-Prats C, Beuron F, Vannini A

PDB-7q5b:
Cryo-EM structure of Ty3 retrotransposon targeting a TFIIIB-bound tRNA gene
Method: single particle / : Abascal-Palacios G, Jochem L, Pla-Prats C, Beuron F, Vannini A

EMDB-24236:
SARS-CoV-2 S (B.1.429 / epsilon variant) + S2M11 + S2L20 Global Refinement
Method: single particle / : McCallum M, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)

EMDB-24237:
SARS-CoV-2 S (B.1.429 / epsilon variant) + S2M11 + S2L20 (Local Refinement of the NTD/S2L20)
Method: single particle / : McCallum M, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

PDB-7n8h:
SARS-CoV-2 S (B.1.429 / epsilon variant) + S2M11 + S2L20 Global Refinement
Method: single particle / : McCallum M, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)

PDB-7n8i:
SARS-CoV-2 S (B.1.429 / epsilon variant) + S2M11 + S2L20 (Local Refinement of the NTD/S2L20)
Method: single particle / : McCallum M, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D

EMDB-11904:
Apo Human RNA Polymerase III
Method: single particle / : Ramsay EP, Abascal-Palacios G, Daiss JL, King H, Gouge J, Pilsl M, Beuron F, Morris E, Gunkel P, Engel C, Vannini A

PDB-7ast:
Apo Human RNA Polymerase III
Method: single particle / : Ramsay EP, Abascal-Palacios G, Daiss JL, King H, Gouge J, Pilsl M, Beuron F, Morris E, Gunkel P, Engel C, Vannini A

EMDB-22491:
SARS-CoV-2 spike in complex with the S2H13 neutralizing antibody Fab fragment (local refinement of the receptor-binding motif and Fab variable domains)
Method: single particle / : Park YJ, Tortorici MA, Walls AC, Czudnochowski N, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Snell G, Veesler D

EMDB-22492:
SARS-CoV-2 spike in complex with the S2H13 neutralizing antibody (one RBD open)
Method: single particle / : Park YJ, Tortorici MA, Walls AC, Czudnochowski N, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Snell G, Veesler D

EMDB-22494:
SARS-CoV-2 spike in complex with the S2H13 neutralizing antibody (closed conformation)
Method: single particle / : Park YJ, Tortorici MA, Walls AC, Czudnochowski N, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Snell G, Veesler D

EMDB-22497:
SARS-CoV-2 spike in complex with the S2A4 neutralizing antibody Fab fragment (local refinement of the receptor-binding domain and Fab variable domains)
Method: single particle / : Park YJ, Tortorici MA, Walls AC, Czudnochowski N, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Snell G, Veesler D

EMDB-22506:
SARS-CoV-2 spike in complex with the S2A4 neutralizing antibody Fab fragment
Method: single particle / : Park YJ, Tortorici MA, Walls AC, Czudnochowski N, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Snell G, Veesler D

EMDB-22507:
SARS-CoV-2 spike in complex with the S2H14 neutralizing antibody Fab fragment (two receptor-binding domains open)
Method: single particle / : Park YJ, Tortorici MA, Walls AC, Czudnochowski N, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Snell G, Veesler D

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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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