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Showing 1 - 50 of 1,344 items for (author: susan & n)

EMDB-77586:
Salmonella Flagellar Export Gate with FlhB in the context of the intact basal body
Method: single particle / : Johnson S, Johnson MK, Lea SM

EMDB-77588:
Salmonella Flagellar Export Apparatus FlhA transmembrane domain nonamer in the context of the intact basal body
Method: single particle / : Johnson S, Johnson MK, Lea SM

EMDB-77603:
Salmonella Flagellar Export Apparatus (FliPQR/FlhB/FlhA) in the context of the intact basal body
Method: single particle / : Johnson S, Johnson MK, Lea SM

PDB-36hu:
Salmonella Flagellar Export Gate with FlhB in the context of the intact basal body
Method: single particle / : Johnson S, Johnson MK, Lea SM

PDB-36hw:
Salmonella Flagellar Export Apparatus FlhA transmembrane domain nonamer in the context of the intact basal body
Method: single particle / : Johnson S, Johnson MK, Lea SM

PDB-36is:
Salmonella Flagellar Export Apparatus (FliPQR/FlhB/FlhA) in the context of the intact basal body
Method: single particle / : Johnson S, Johnson MK, Lea SM

EMDB-72520:
Eukaryotic translation initiation factor 2-B (eIF2B) bound to phosphorylated eIF2alpha (NTD)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

EMDB-72521:
eIF2B lacking the latch helix bound to ISRACT-01 (Inactive state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

EMDB-72522:
eIF2B lacking the latch helix bound to ISRACT-02 (Active state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

EMDB-72523:
eIF2B lacking the latch helix bound to ISRACT-02 (Inactive state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

PDB-9y5r:
Eukaryotic translation initiation factor 2-B (eIF2B) bound to phosphorylated eIF2alpha (NTD)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

PDB-9y5s:
eIF2B lacking the latch helix bound to ISRACT-01 (Inactive state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

PDB-9y5t:
eIF2B lacking the latch helix bound to ISRACT-02 (Active state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

PDB-9y5u:
eIF2B lacking the latch helix bound to ISRACT-02 (Inactive state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

EMDB-72462:
Eukaryotic translation initiation factor 2-B in its apo form (active-state) (CASP target)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

EMDB-72463:
Eukaryotic translation initiation factor 2-B in its apo form (inactive-state) (CASP target)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

EMDB-72466:
Eukaryotic translation initiation factor 2-B (eIF2B) with a truncation in the beta subunit (active-like-state) (CASP target)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

EMDB-72467:
Eukaryotic translation initiation factor 2-B (eIF2B) with a truncation in the beta subunit (inactive state) (CASP target)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

EMDB-72468:
Eukaryotic translation initiation factor 2-B (eIF2B) bound to the viral effector AcP10
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

EMDB-72477:
Eukaryotic translation initiation factor 2-B (eIF2B) with a truncation in the beta subunit (active-like-state) bound to the viral effector AcP10 (CASP target)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

EMDB-72499:
Eukaryotic translation initiation factor 2-B (eIF2B) with a truncation in the beta subunit (active-like-state) asymmetrically bound to the viral effector AcP10 (CASP target)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

PDB-9y3p:
Eukaryotic translation initiation factor 2-B in its apo form (active-state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

PDB-9y3q:
Eukaryotic translation initiation factor 2-B in its apo form (inactive-state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

PDB-9y3t:
Eukaryotic translation initiation factor 2-B (eIF2B) with a truncation in the beta subunit (active-like-state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

PDB-9y3u:
Eukaryotic translation initiation factor 2-B (eIF2B) with a truncation in the beta subunit (inactive state)
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

PDB-9y3v:
Eukaryotic translation initiation factor 2-B (eIF2B) bound to the viral effector AcP10
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

PDB-9y4b:
Eukaryotic translation initiation factor 2-B (eIF2B) with a truncation in the beta subunit (active-like-state) bound to the viral effector AcP10
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

PDB-9y4w:
Eukaryotic translation initiation factor 2-B (eIF2B) with a truncation in the beta subunit (active-like-state) asymmetrically bound to the viral effector AcP10
Method: single particle / : Dalwadi U, Croll T, Subramanian A, Lee DJ, Arthur C, Walter P, Frost A

EMDB-75944:
Human transferrin receptor ectodomain
Method: single particle / : Lee H, Ros C, Hafenstein S

EMDB-75980:
Complex of B19V VP1u RBD and human transferrin receptor ectodomain
Method: single particle / : Lee H, Ros C, Hafenstein S

PDB-11qc:
Human transferrin receptor ectodomain
Method: single particle / : Lee H, Ros C, Hafenstein S

PDB-11rn:
Complex of B19V VP1u RBD and human transferrin receptor ectodomain
Method: single particle / : Lee H, Ros C, Hafenstein S

EMDB-53313:
Structure of the MEGF8-MOSMO complex with nanobody 270 (Focused refinement)
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Sarkar P, Lartey D, Gao L, Milenkovic L, Chalk R, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

EMDB-53321:
Focused refinement of the MGRN1 ubiquitin ligase in complex with MEGF8, MOSMO and nanobody 270
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Lartey D, Gao L, Milenkovic L, Chalk R, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

EMDB-53322:
Structure of the MMM ubiquitin ligase complex with nanobody 270 (Consensus map)
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Lartey D, Gao L, Milenkovic L, Chalk R, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

EMDB-53323:
Cryo-EM structure of the MMM ubiquitin ligase complex with nanobody 270 (Composite map)
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Sarkar P, Lartey D, Gao L, Milenkovic L, Chalk R, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

EMDB-53327:
Structure of the helix-stabilized MMM ubiquitin ligase complex with nanobody 270 (Consensus map)
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Sarkar P, Lartey D, Gao L, Milenkovic L, Chalk R, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

EMDB-53328:
Focused refinement of the MGRN1 ubiquitin ligase in complex with helix-stabilized MEGF8, MOSMO and nanobody 270
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Sarkar P, Lartey D, Gao L, Milenkovic L, Chalk R, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

EMDB-53329:
Cryo-EM structure of the helix-stabilized MMM ubiquitin ligase complex with nanobody 270 (Composite map)
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Sarkar P, Lartey D, Gao L, Milenkovic L, Steyaert J, Bazan F, Rouse S, Marqusee S, Kong JH, Rohatgi R, Siebold C

EMDB-53336:
Focused refinement of the MEGF8-MOSMO complex with nanobody 992
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Sarkar P, Lartey D, Gao L, Milenkovic L, Chalk R, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

EMDB-53337:
Focused refinement of the MEGF8 and MOSMO extracellular domains with nanobody 992
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Sarkar P, Lartey D, Gao L, Milenkovic L, Chalk R, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

EMDB-53338:
Focused refinement of the MGRN1 ubiquitin ligase in complex with MEGF8, MOSMO and nanobody 992
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Sarkar P, Lartey D, Gao L, Milenkovic L, Chalk R, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

EMDB-53339:
Structure of the MMM ubiquitin ligase complex with nanobody 992 (Consensus map)
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Sarkar P, Lartey D, Gao L, Milenkovic L, Chalk R, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

EMDB-53340:
Cryo-EM structure of the MMM ubiquitin ligase complex with nanobody 992 (Composite map)
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Sarkar P, Latorraca NR, Lartey D, Gao L, Milenkovic L, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

EMDB-53367:
Cryo-EM structure of the binary MEGF8-MOSMO complex with nanobody 270
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Sarkar P, Lartey D, Gao L, Milenkovic L, Chalk R, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

EMDB-57249:
Focused refinement of the helix-stabilized MEGF8-MOSMO complex with nanobody 270
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Sarkar P, Lartey D, Gao L, Milenkovic L, Chalk R, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

PDB-9qqs:
Structure of the MEGF8-MOSMO complex with nanobody 270 (Focused refinement)
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Sarkar P, Lartey D, Gao L, Milenkovic L, Chalk R, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

PDB-9qru:
Cryo-EM structure of the MMM ubiquitin ligase complex with nanobody 270 (Composite map)
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Sarkar P, Lartey D, Gao L, Milenkovic L, Chalk R, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

PDB-9qs6:
Cryo-EM structure of the helix-stabilized MMM ubiquitin ligase complex with nanobody 270 (Composite map)
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Sarkar P, Lartey D, Gao L, Milenkovic L, Steyaert J, Bazan F, Rouse S, Marqusee S, Kong JH, Rohatgi R, Siebold C

PDB-9qsh:
Cryo-EM structure of the MMM ubiquitin ligase complex with nanobody 992 (Composite map)
Method: single particle / : Williams C, Carrique L, Pardon E, Nocka LM, Hedger G, Pusapati GV, Parashara P, Latorraca NR, Sarkar P, Lartey D, Gao L, Milenkovic L, Steyaert J, Bazan F, Rouse SL, Marqusee S, Kong JH, Rohatgi R, Siebold C

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