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Showing 1 - 50 of 572 items for (author: walter & t)

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-52707: 
Dark-state structure of human medium-wavelength cone opsin (OPN1MW)
Method: single particle / : Schmidt SL, Isaikina P

EMDB-71791: 
Human 19S proteasome regulatory particle (RP) without observing TXNL1 PITH domain bound
Method: single particle / : Chen X, Negi H, Walters KJ

EMDB-71795: 
Human 19S proteasome regulatory particle (RP) without observing TXNL1 PITH domain bound but with extra density adjacent to RPT1/RPT2
Method: single particle / : Chen X, Negi H, Walters KJ

EMDB-71737: 
Human 19S proteasome bound to TXNL1 PITH domain without C-terminus
Method: single particle / : Chen X, Negi H, Walters KJ

EMDB-71740: 
Human 26S proteasome bound to TXNL1 with opened gate of core particle
Method: single particle / : Chen X, Negi H, Walters KJ

EMDB-71741: 
Human 26S proteasome bound to TXNL1 with closed gate of core particle
Method: single particle / : Chen X, Negi H, Walters KJ

EMDB-71810: 
Human 19S proteasome bound to TXNL1 PITH domain and PSMD5
Method: single particle / : Chen X, Negi H, Walters KJ

EMDB-71813: 
Human 19S proteasome bound to TXNL1 PITH domain but with low density for RPT1, RPT2, and RPN1
Method: single particle / : Chen X, Negi H, Walters KJ

EMDB-76283: 
Human 19S proteasome bound to TXNL1 PITH domain state 2
Method: single particle / : Chen X, Negi H, Walters KJ

PDB-12bm: 
Human 19S proteasome bound to TXNL1 PITH domain state 2
Method: single particle / : Chen X, Negi H, Walters KJ

PDB-9pmj: 
Human 19S proteasome bound to TXNL1 PITH domain without C-terminus
Method: single particle / : Chen X, Negi H, Walters KJ

PDB-9pmo: 
Human 26S proteasome bound to TXNL1 with opened gate of core particle
Method: single particle / : Chen X, Negi H, Walters KJ

PDB-9pmq: 
Human 26S proteasome bound to TXNL1 with closed gate of core particle
Method: single particle / : Chen X, Negi H, Walters KJ

PDB-9pro: 
Human 19S proteasome bound to TXNL1 PITH domain and PSMD5
Method: single particle / : Chen X, Negi H, Walters KJ

PDB-9prt: 
Human 19S proteasome bound to TXNL1 PITH domain but with low density for RPT1, RPT2, and RPN1
Method: single particle / : Chen X, Negi H, Walters KJ

EMDB-76415: 
Human 19S proteasome regulatory particle bound to TXNL1 PITH domain and p28
Method: single particle / : Chen X, Negi H, Walters KJ

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-52615: 
Dark-state structure of human medium-wave-sensitive cone opsin (OPN1MW)
Method: single particle / : Schmidt SL, Isaikina P

EMDB-52814: 
Dark-state structure of human short-wave-sensitive opsin (OPN1SW)
Method: single particle / : Schmidt SL, Isaikina P

EMDB-53268: 
Pre-active dark-state structure of human short-wave-sensitive opsin (OPN1SW)
Method: single particle / : Schmidt SL, Isaikina P

PDB-9i3t: 
Dark-state structure of human medium-wave-sensitive cone opsin (OPN1MW)
Method: single particle / : Schmidt SL, Sen S, Isaikina P

PDB-9ibw: 
Dark-state structure of human short-wave-sensitive opsin (OPN1SW)
Method: single particle / : Schmidt SL, Isaikina P

PDB-9qp4: 
Pre-active dark-state structure of human short-wave-sensitive opsin (OPN1SW)
Method: single particle / : Schmidt SL, Isaikina P

EMDB-55638: 
Cryo-EM structure of the PseTnsAB paired-end complex (right end) in the presence of Mg
Method: single particle / : Finocchio G, Oberli S, Jinek M

EMDB-57833: 
Cryo-EM structure of the PseTnsAB paired-end complex (right end) in the presence of Mn
Method: single particle / : Finocchio G, Oberli S, Jinek M

EMDB-57834: 
Cryo-EM structure of the PseTnsAB paired-end complex (left end) in the presence of Mg
Method: single particle / : Finocchio G, Oberli S, Jinek M

PDB-30jv: 
Cryo-EM structure of the PseTnsAB paired-end complex (right end) in the presence of Mn
Method: single particle / : Finocchio G, Oberli S, Jinek M

PDB-30jw: 
Cryo-EM structure of the PseTnsAB paired-end complex (left end) in the presence of Mg
Method: single particle / : Finocchio G, Oberli S, Jinek M

PDB-9t7l: 
Cryo-EM structure of the PseTnsAB paired-end complex (right end) in the presence of Mg
Method: single particle / : Finocchio G, Oberli S, Jinek M
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