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Showing 1 - 50 of 248 items for (author: schneider & d)

EMDB-49946:
Nucleic acid bound human SLFN14, State 1
Method: single particle / : Van Riper J, Martinez-Claros AO, Wang L, Schneiderman H, Maheshwari S, Pillon MC

EMDB-49947:
Nucleic acid bound human SLFN14, State 2
Method: single particle / : Van Riper J, Martinez-Claros AO, Wang L, Schneiderman H, Maheshwari S, Pillon MC

PDB-9nyy:
Nucleic acid bound human SLFN14, State 1
Method: single particle / : Van Riper J, Martinez-Claros AO, Wang L, Schneiderman H, Maheshwari S, Pillon MC

EMDB-51434:
Befiradol-bound serotonin 5-HT1A receptor - Gs Protein Complex
Method: single particle / : Schneider J, Gmeiner P, Boettcher B, Rasmussen T

PDB-9gl2:
Befiradol-bound serotonin 5-HT1A receptor - Gs Protein Complex
Method: single particle / : Schneider J, Gmeiner P, Boettcher B, Rasmussen T

EMDB-51454:
Mtb PNPase Rv2783c
Method: single particle / : Griesser T, Sander P

EMDB-51455:
Mtb PNPase Rv2783c Mutant L328F
Method: single particle / : Griesser T, Sander P

PDB-9gms:
Mtb PNPase Rv2783c
Method: single particle / : Griesser T, Sander P

PDB-9gmt:
Mtb PNPase Rv2783c Mutant L328F
Method: single particle / : Griesser T, Sander P

EMDB-53511:
SpCas9 with computationally designed SpCas9_b10 binder
Method: single particle / : Pacesa M, Nickel L, Correia BE

EMDB-51428:
Map of full-length TRIP12 K29/K48-branched chain formation complex
Method: single particle / : Maiwald SA, Schulman BA

EMDB-51429:
Structure of HECT E3 TRIP12 forming K29/K48-branched Ubiquitin chains
Method: single particle / : Maiwald SA, Schulman BA

EMDB-51430:
Structure of HECT E3 TRIP12 forming K29-linked Ubiquitin chains
Method: single particle / : Maiwald SA, Schulman BA

PDB-9gkm:
Structure of HECT E3 TRIP12 forming K29/K48-branched Ubiquitin chains
Method: single particle / : Maiwald SA, Schulman BA

PDB-9gkn:
Structure of HECT E3 TRIP12 forming K29-linked Ubiquitin chains
Method: single particle / : Maiwald SA, Schulman BA

EMDB-53510:
SpCas9 with computationally designed SpCas9_b3 binder
Method: single particle / : Pacesa M, Nickel L, Correia BE

EMDB-18795:
Cryo-EM structure of the microbial rhodopsin CryoR1 at pH 4.3 in detergent
Method: single particle / : Kovalev K, Marin E, Stetsenko A, Guskov A, Lamm GHU

EMDB-18796:
Cryo-EM structure of the microbial rhodopsin CryoR1 at pH 8.0 in nanodisc
Method: single particle / : Kovalev K, Marin E, Stetsenko A, Guskov A, Lamm GHU

EMDB-18797:
Cryo-EM structure of the microbial rhodopsin CryoR1 at pH 8.0 in detergent
Method: single particle / : Kovalev K, Marin E, Stetsenko A, Guskov A, Lamm GHU

EMDB-18798:
Cryo-EM structure of the microbial rhodopsin CryoR1 at pH 10.5 in detergent in the ground state
Method: single particle / : Kovalev K, Marin E, Stetsenko A, Guskov A, Lamm GHU

EMDB-18799:
Cryo-EM structure of the microbial rhodopsin CryoR1 at pH 10.5 in detergent in the M state
Method: single particle / : Kovalev K, Marin E, Stetsenko A, Guskov A, Lamm GHU

EMDB-18800:
Cryo-EM structure of the microbial rhodopsin CryoR2 at pH 8.0 in detergent
Method: single particle / : Kovalev K, Marin E, Stetsenko A, Guskov A, Lamm GHU

EMDB-19982:
Lymphostatin, conformation 1, N-terminal part
Method: single particle / : Griessmann M, Rasmussen T, Bottcher B

EMDB-19983:
Lymphostatin, conformation 1, local refinement C-terminal part
Method: single particle / : Griessmann M, Rasmussen T, Bottcher B

EMDB-19984:
Lymphostatin, conformation 2, N-terminal part
Method: single particle / : Griessmann M, Rasmussen T, Bottcher B

EMDB-19985:
Lymphostatin, conformation 2 , local refinement C-terminal part
Method: single particle / : Griessmann M, Rasmussen T, Bottcher B

EMDB-19987:
Lymphostatin, conformation 1 (composite structure)
Method: single particle / : Griessmann M, Rasmussen T, Bottcher B

EMDB-19988:
Lymphostatin, conformation 2 (composite structure)
Method: single particle / : Griessmann M, Rasmussen T, Bottcher B

EMDB-19880:
Cryo-EM structure of human apoferritin (grid prepared with EasyGrid technology)
Method: single particle / : Gemin O, Mattei S, Papp G

EMDB-18620:
Structure of Vipp1 carpet on EPL membrane
Method: subtomogram averaging / : Junglas B, Kartte D, Sachse C

EMDB-19863:
250A Vipp1 dL10Ala helical tubes in the presence of EPL
Method: helical / : Junglas B, Sachse C

EMDB-19864:
270A Vipp1 dL10Ala helical tubes in the presence of EPL
Method: helical / : Junglas B, Sachse C

EMDB-19865:
260A Vipp1 dL10Ala helical tubes in the presence of EPL
Method: helical / : Junglas B, Sachse C

EMDB-19866:
270A Vipp1 dL10Ala helical tubes in the presence of EPL
Method: helical / : Junglas B, Sachse C

EMDB-19899:
C15 Vipp1 dL10Ala ring
Method: single particle / : Junglas B, Sachse C

EMDB-19900:
C16 Vipp1 dL10Ala ring
Method: single particle / : Junglas B, Sachse C

EMDB-19901:
C17 Vipp1 dL10Ala ring
Method: single particle / : Junglas B, Sachse C

EMDB-19902:
C18 Vipp1 dL10Ala ring
Method: single particle / : Junglas B, Sachse C

EMDB-19903:
C19 Vipp1 dL10Ala ring
Method: single particle / : Junglas B, Sachse C

EMDB-19904:
C20 Vipp1 dL10Ala ring
Method: single particle / : Junglas B, Sachse C

PDB-9eom:
250A Vipp1 dL10Ala helical tubes in the presence of EPL
Method: helical / : Junglas B, Sachse C

PDB-9eon:
270A Vipp1 dL10Ala helical tubes in the presence of EPL
Method: helical / : Junglas B, Sachse C

PDB-9eoo:
260A Vipp1 dL10Ala helical tubes in the presence of EPL
Method: helical / : Junglas B, Sachse C

PDB-9eop:
270A Vipp1 dL10Ala helical tubes in the presence of EPL
Method: helical / : Junglas B, Sachse C

EMDB-18420:
275A Vipp1 helical tubes in the presence of EPL
Method: helical / : Junglas B, Sachse C

EMDB-18421:
290A Vipp1 helical tubes in the presence of EPL
Method: helical / : Junglas B, Sachse C

EMDB-18422:
C11 Vipp1 stacked rings in the presence of EPL
Method: single particle / : Junglas B, Sachse B

EMDB-18423:
C12 Vipp1 stacked rings in the presence of EPL
Method: single particle / : Junglas B, Sachse B

EMDB-18424:
C13 Vipp1 stacked rings in the presence of EPL
Method: single particle / : Junglas B, Sachse B

EMDB-18425:
C14 Vipp1 stacked rings in the presence of EPL
Method: single particle / : Junglas B, Sachse B

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