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Showing 1 - 50 of 1,170 items for (author: rao & b)

EMDB-66504: 
Phage T4 neck in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-66505: 
Phage T4 sheath in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-66506: 
Phage T4 inner baseplate in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-66507: 
Phage T4 peripheral baseplate in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-66508: 
Phage T4 tip of the tail tube in post-tail-contraction state (genome-empty particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-66675: 
Phage T4 protruding part of the tail tube in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9x3o: 
Phage T4 neck in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9x3p: 
Phage T4 sheath in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9x3q: 
Phage T4 inner baseplate in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9x3r: 
Phage T4 peripheral baseplate in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9x3s: 
Phage T4 tip of the tail tube in post-tail-contraction state (genome-empty particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

PDB-9xa3: 
Phage T4 protruding part of the tail tube in post-tail-contraction state (genome-full particle)
Method: single particle / : Shao Q, Dong J, Wang A, Hu H, Yue J, Li H, Li Y, Zhang Q, Liu J, Sun L, Fokine A, Rao VB, Tao P, Fang Q

EMDB-77181: 
PD-L1 complexed with Germinal-designed anti-PD-L1 scFv H5
Method: single particle / : Zhang JL, Rao B, Feng L

PDB-35tl: 
PD-L1 complexed with Germinal-designed anti-PD-L1 scFv H5
Method: single particle / : Zhang JL, Rao B, Feng L

EMDB-66432: 
Cryo-EM structure of AKT5 - D403A
Method: single particle / : Muraoka Y, Tanaka Y, Yokoyama T, Furuta T, Yamanashi T, Tsujii M, Tsubota R, Uozumi N

PDB-9x0c: 
Cryo-EM structure of AKT5 - D403A
Method: single particle / : Muraoka Y, Tanaka Y, Yokoyama T, Furuta T, Yamanashi T, Tsujii M, Tsubota R, Uozumi N

EMDB-66431: 
Cryo-EM structure of AKT5 - WT
Method: single particle / : Muraoka Y, Tanaka Y, Yokoyama T, Furuta T, Yamanashi T, Tsujii M, Tsubota R, Uozumi N

PDB-9x0b: 
Cryo-EM structure of AKT5 - WT
Method: single particle / : Muraoka Y, Tanaka Y, Yokoyama T, Furuta T, Yamanashi T, Tsujii M, Tsubota R, Uozumi N

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-80106: 
Cryo-EM structure of the Helicobacter pylori ferritin-I69C
Method: single particle / : Wang N, Liu Y, Shan J, Rao H, Ma X, Li Y

PDB-25ho: 
Cryo-EM structure of the Helicobacter pylori ferritin-I69C
Method: single particle / : Wang N, Liu Y, Shan J, Rao H, Ma X, Li Y

EMDB-70397: 
Structure of the human astrovirus VA1 capsid spike bound to antibody 7C8
Method: single particle / : Ghosh A, Dzimianski JV, Balasco Serrao VH, DuBois RM

EMDB-70398: 
Structure of the human astrovirus VA1 capsid spike bound to antibody 2A2
Method: single particle / : Ghosh A, Dzimianski JV, Balasco Serrao VH, DuBois RM

PDB-9oef: 
Structure of the human astrovirus VA1 capsid spike bound to antibody 7C8
Method: single particle / : Ghosh A, Dzimianski JV, Balasco Serrao VH, DuBois RM

PDB-9oeg: 
Structure of the human astrovirus VA1 capsid spike bound to antibody 2A2
Method: single particle / : Ghosh A, Dzimianski JV, Balasco Serrao VH, DuBois RM

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-65360: 
Structure of human proteasome ATPase-CP intermediate assembles with 15min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

EMDB-65361: 
Structure of human proteasome ATPase-CP intermediate assembles with 90min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

EMDB-65362: 
Structure of human proteasome ATPase-CP intermediate assembles with 90min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

PDB-9vue: 
Structure of human proteasome ATPase-CP intermediate assembles with 15min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD
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