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Showing 1 - 50 of 660 items for (author: elisa & o)

EMDB-56664:
Cryo-ET of IAV (WSN-M1-Udorn) supernatant
Method: electron tomography / : Peterl S, Chlanda P

EMDB-56667:
Cryo-ET of IAV (WSN-M1-Udorn) pellet
Method: electron tomography / : Peterl S, Chlanda P

EMDB-56668:
Cryo-ET of IAV (WSN-M1-Udorn) unfractionated
Method: electron tomography / : Peterl S, Chlanda P

EMDB-52603:
CryoEM structure of the Themis:Grb2 complex with bound ProMacrobody 256
Method: single particle / : Clancy DM, Felix J, Bloch Y, Savvides SN

EMDB-52604:
3D reconstruction of Themis:Grb2:ProMacrobody256 after 3D classification (Class 1)
Method: single particle / : Clancy DM, Felix J, Bloch Y, Savvides SN

EMDB-52605:
3D reconstruction of Themis:Grb2:ProMacrobody256 after 3D classification (Class 2)
Method: single particle / : Clancy DM, Felix J, Bloch Y, Savvides SN

EMDB-52606:
3D reconstruction of Themis:Grb2:ProMacrobody256 after 3D classification (Class 3)
Method: single particle / : Clancy DM, Felix J, Bloch Y, Savvides SN

EMDB-52607:
3D reconstruction of Themis:Grb2:ProMacrobody256 after 3D classification (Class 4)
Method: single particle / : Clancy DM, Felix J, Bloch Y, Savvides SN

EMDB-52608:
CryoEM map of Themis bound to ProMacrobody 256
Method: single particle / : Clancy DM, Felix J, Bloch Y, Savvides SN

EMDB-52609:
3D reconstruction of Themis:ProMacrobody256 after 3D classification (Class 1)
Method: single particle / : Clancy DM, Felix J, Bloch Y, Savvides SN

EMDB-52610:
3D reconstruction of Themis:ProMacrobody256 after 3D classification (Class 2)
Method: single particle / : Clancy DM, Felix J, Bloch Y, Savvides SN

EMDB-52787:
CryoEM structure of the Themis:Grb2 complex with bound ProMacrobody 256, local refinement
Method: single particle / : Clancy DM, Felix J, Bloch Y, Savvides SN

PDB-9i3p:
CryoEM structure of the Themis:Grb2 complex with bound ProMacrobody 256
Method: single particle / : Clancy DM, Felix J, Bloch Y, Savvides SN

PDB-9iaz:
CryoEM structure of the Themis:Grb2 complex with bound ProMacrobody 256, local refinement
Method: single particle / : Clancy DM, Felix J, Bloch Y, Savvides SN

EMDB-72655:
Gb1g2 crosslinked to PLCb3
Method: single particle / : Fisher IJ, Lyon AM

EMDB-72732:
Gbg crosslinked to PLCb3 - second conformation
Method: single particle / : Fisher IJ, Lyon AM

EMDB-72733:
Gbg crosslinked to PLCb3 - second conformation
Method: single particle / : Fisher IJ, Lyon AM

PDB-9y7h:
Gb1g2 crosslinked to PLCb3
Method: single particle / : Fisher IJ, Lyon AM

PDB-9yao:
Gbg crosslinked to PLCb3 - second conformation
Method: single particle / : Fisher IJ, Lyon AM

PDB-9yap:
Gbg crosslinked to PLCb3 - second conformation
Method: single particle / : Fisher IJ, Lyon AM

EMDB-52419:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Open Tetramer
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52420:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Closed1 tetramer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52421:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Closed2 tetramer
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52422:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Empty monomer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52423:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. cofactor-monomer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52424:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Cofactor/ligand-monomer
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52425:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. cofactor/ligand-monomer in Open tetramer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52426:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. cofactor/ligand-monomer in Closed1 tetramer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52427:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. cofactor/ligand-monomer in Closed2 tetramer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52428:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Total-monomer
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52429:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Closed2 tetramer with cofactor/ligand-monomer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

PDB-9hux:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Open Tetramer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

PDB-9huy:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Closed1 tetramer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

PDB-9huz:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Closed2 tetramer
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

PDB-9hv0:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Empty monomer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

PDB-9hv4:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. cofactor-monomer.
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

PDB-9hv5:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Cofactor/ligand-monomer
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

PDB-9hv6:
CryoEM map of the large glutamate dehydrogenase composed of 180 kDa subunits from Mycobacterium smegmatis obtained in the presence of NAD+ and L-glutamate. Total-monomer
Method: single particle / : Lazaro M, Chamorro N, Lopez-Alonso JP, Charro D, Rasia RM, Jimenez-Oses G, Valle M, Lisa MN

EMDB-52570:
Cryo-EM structure of mouse RNF213 (WB3/WB4 + ATP)
Method: single particle / : Grabarczyk DB, Ahel J, Clausen T

EMDB-52571:
Cryo-EM structure of mouse RNF213:UBE2L3 transthiolation intermediate, chemically stabilized, and ATPgS
Method: single particle / : Grabarczyk DB, Ahel J, Clausen T

PDB-9i1i:
Cryo-EM structure of mouse RNF213 (WB3/WB4 + ATP)
Method: single particle / : Grabarczyk DB, Ahel J, Clausen T

PDB-9i1j:
Cryo-EM structure of mouse RNF213:UBE2L3 transthiolation intermediate, chemically stabilized, and ATPgS
Method: single particle / : Grabarczyk DB, Ahel J, Clausen T

EMDB-52913:
Human chondroitin sulfate polymerase complex CHSY3-CHPF
Method: single particle / : Dutta P, Cordeiro RL, Wild R

EMDB-53011:
Focused refinement map of CHSY3-CHPF complex: N-terminal part
Method: single particle / : Dutta P, Cordeiro RL, Wild R

EMDB-53012:
Focused refinement map of CHSY3-CHPF complex: C-terminal part
Method: single particle / : Dutta P, Cordeiro RL, Wild R

EMDB-53018:
Consensus map of CHSY3-CHPF complex
Method: single particle / : Dutta P, Cordeiro RL, Wild R

PDB-9q8z:
Human chondroitin sulfate polymerase complex CHSY3-CHPF
Method: single particle / : Dutta P, Cordeiro RL, Wild R

EMDB-12250:
Bacterial 30S ribosomal subunit assembly complex state B (Consensus Refinement)
Method: single particle / : Schedlbauer A, Iturrioz I, Ochoa-Lizarralde B, Diercks T, Kaminishi T, Capuni R, Astigarraga E, Gil-Carton D, Fucini P, Connell S

PDB-7naw:
Bacterial 30S ribosomal subunit assembly complex state B (Consensus Refinement)
Method: single particle / : Schedlbauer A, Iturrioz I, Ochoa-Lizarralde B, Diercks T, Kaminishi T, Capuni R, Astigarraga E, Gil-Carton D, Fucini P, Connell S

EMDB-51901:
SARS-CoV-2 S protein in complex with pT1679 Fab
Method: single particle / : Hansen G, Benecke T, Vollmer B, Gruenewald K, Krey T

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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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