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Showing all 27 items for (author: raska & i)
![](data/pdb/img/8tym.jpg)
PDB-8tym:
Cryo-EM of the GDP-bound human dynamin (full-length) polymer assembled on the membrane in the super constricted state
Method: helical / : Jimah JR, Canagarajah BJ, Hinshaw JE
![](data/pdb/img/8tyn.jpg)
PDB-8tyn:
Cryo-EM of the GDP-bound human dynamin polymer assembled on the membrane in the super constricted state (tetramer model)
Method: helical / : Jimah JR, Canagarajah BJ, Hinshaw JE
![](data/emdb/media/40861/emdbimg.jpg)
EMDB-40861:
Cryo-EM of the GDP-bound human dynamin polymer assembled on the membrane in the super constricted state
Method: helical / : Jimah JR, Canagarajah BJ, Hinshaw JE
![](data/emdb/media/40901/emdbimg.jpg)
EMDB-40901:
Cryo-EM of the GDP-bound human dynamin polymer assembled on the membrane in the super constricted state showing the PH domain
Method: helical / : Jimah JR, Canagarajah BJ, Hinshaw JE
![](data/emdb/media/40902/emdbimg.jpg)
EMDB-40902:
Cryo-EM of the GDP-bound human dynamin polymer assembled on the membrane in the super constricted state showing the second PH domain
Method: helical / : Jimah JR, Canagarajah BJ, Hinshaw JE
![](data/emdb/media/40903/emdbimg.jpg)
EMDB-40903:
Cryo-EM of the GDP-bound human dynamin polymer assembled on the membrane in the super constricted state (full helix)
Method: helical / : Jimah JR, Canagarajah BJ, Hinshaw JE
![](data/emdb/media/40942/emdbimg.jpg)
EMDB-40942:
Cryo-EM of the GDP-bound human dynamin (full-length) polymer assembled on the membrane in the super constricted state
Method: helical / : Jimah JR, Canagarajah BJ, Hinshaw JE
![](data/emdb/media/40946/emdbimg.jpg)
EMDB-40946:
Cryo-EM of the GDP-bound human dynamin (full-length) polymer assembled on the membrane in the super constricted state (full helix)
Method: helical / : Jimah JR, Canagarajah BJ, Hinshaw JE
![](data/pdb/img/8sxz.jpg)
PDB-8sxz:
Cryo-EM of the GDP-bound human dynamin polymer assembled on the membrane in the super constricted state
Method: helical / : Jimah JR, Canagarajah BJ, Hinshaw JE
![](data/pdb/img/8sz4.jpg)
PDB-8sz4:
Cryo-EM of the GDP-bound human dynamin polymer assembled on the membrane in the super constricted state showing the PH domain
Method: helical / : Jimah JR, Canagarajah BJ, Hinshaw JE
![](data/pdb/img/8sz7.jpg)
PDB-8sz7:
Cryo-EM of the GDP-bound human dynamin polymer assembled on the membrane in the super constricted state showing the second PH domain
Method: helical / : Jimah JR, Canagarajah BJ, Hinshaw JE
![](data/pdb/img/8sz8.jpg)
PDB-8sz8:
Cryo-EM of the GDP-bound human dynamin polymer assembled on the membrane in the super constricted state (full helix)
Method: helical / : Jimah JR, Canagarajah BJ, Hinshaw JE
![](data/pdb/img/8t0k.jpg)
PDB-8t0k:
Cryo-EM of the GDP-bound human dynamin (full-length) polymer assembled on the membrane in the super constricted state
Method: helical / : Jimah JR, Canagarajah BJ, Hinshaw JE
![](data/pdb/img/8t0r.jpg)
PDB-8t0r:
Cryo-EM of the GDP-bound human dynamin (full-length) polymer assembled on the membrane in the super constricted state (full helix)
Method: helical / : Jimah JR, Canagarajah BJ, Hinshaw JE
![](data/emdb/media/43658/emdbimg.jpg)
EMDB-43658:
SARS-CoV-2 S (C.37 Lambda variant) plus S309, S2L20, and S2X303 Fabs
Method: single particle / : McCallum M, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)
![](data/emdb/media/43659/emdbimg.jpg)
EMDB-43659:
SARS-CoV-2 S NTD (C.37 Lambda variant) plus S2L20 and S2X303 Fabs, local refinement
Method: single particle / : McCallum M, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)
![](data/emdb/media/43660/emdbimg.jpg)
EMDB-43660:
SARS-CoV-2 S RBD (C.37 Lambda variant) plus S309 Fab, local refinement
Method: single particle / : McCallum M, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)
![](data/pdb/img/8vye.jpg)
PDB-8vye:
SARS-CoV-2 S (C.37 Lambda variant) plus S309, S2L20, and S2X303 Fabs
Method: single particle / : McCallum M, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)
![](data/pdb/img/8vyf.jpg)
PDB-8vyf:
SARS-CoV-2 S NTD (C.37 Lambda variant) plus S2L20 and S2X303 Fabs, local refinement
Method: single particle / : McCallum M, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)
![](data/pdb/img/8vyg.jpg)
PDB-8vyg:
SARS-CoV-2 S RBD (C.37 Lambda variant) plus S309 Fab, local refinement
Method: single particle / : McCallum M, Veesler D, Seattle Structural Genomics Center for Infectious Disease (SSGCID)
![](data/pdb/img/8ddg.jpg)
PDB-8ddg:
FYF peptide forms a standard beta-sheet
Method: electron crystallography / : Sawaya MR, Hazari A, Eisenberg DE, Vlahakis NW
![](data/emdb/media/7957/snaps2.jpg)
EMDB-7957:
Cryo-EM of the GMPPCP-bound human dynamin-1 polymer assembled on the membrane in the constricted state
Method: helical / : Kong L, Wang H, Fang S, Canagarajah B, Kehr AD, Rice WJ, Hinshaw JE
![](data/emdb/media/7958/snaps2.jpg)
EMDB-7958:
Cryo-EM of the GTP-bound human dynamin-1 polymer assembled on the membrane in the super constricted state
Method: helical / : Kong L, Wang H
![](data/pdb/media/6dlu/snapsdep.jpg)
PDB-6dlu:
Cryo-EM of the GMPPCP-bound human dynamin-1 polymer assembled on the membrane in the constricted state
Method: helical / : Kong L, Wang H, Fang S, Canagarajah B, Kehr AD, Rice WJ, Hinshaw JE
![](data/pdb/media/6dlv/snapsdep.jpg)
PDB-6dlv:
Cryo-EM of the GTP-bound human dynamin-1 polymer assembled on the membrane in the super constricted state
Method: helical / : Kong L, Wang H, Fang S, Canagarajah B, Kehr AD, Rice WJ, Hinshaw JE
![](data/emdb/media/3274/snaps2.jpg)
EMDB-3274:
Proteolytically inactive Human mitochondrial Lon protease incubated with ADP
Method: single particle / : Kereiche S, Kovacik L, Bednar J, Pevala V, Kunova N, Ondrovicova G, Bauer J, Ambro L, Bellova J, Kutejova E, Raska I
![](data/emdb/media/3275/snaps2.jpg)
EMDB-3275:
Proteolytically inactive Human mitochondrial Lon protease incubated with AMP-PNP
Method: single particle / : Kereiche S, Kovacik L, Bednar J, Pevala V, Kunova N, Ondrovicova G, Bauer J, Ambro L, Bellova J, Kutejova E, Raska I