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Showing 1 - 50 of 90 items for (author: lambe & t)

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-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-70791: 
Cryo-EM structure of the DDB1/CRBN-MRT-5702-G3BP2 ternary complex
Method: single particle / : Quan C, Petzold G, Gainza P, Tsai J, Bunker RD, Wiedmer L, Donckele EJ

PDB-9os2: 
Cryo-EM structure of the DDB1/CRBN-MRT-5702-G3BP2 ternary complex
Method: single particle / : Quan C, Petzold G, Gainza P, Tsai J, Bunker RD, Wiedmer L, Donckele EJ

EMDB-45440: 
Cryo-EM structure of a designed pyridoxal phosphate (PLP) synthase fused to a designed circumsporozoite protein antigen from Plasmodium falciparum (CSP-P1-CSP and CSP-P2-CSP)
Method: single particle / : Shi D, Ma R, Tang WK, Tolia NH

PDB-9cca: 
Cryo-EM structure of a designed pyridoxal phosphate (PLP) synthase fused to a designed circumsporozoite protein antigen from Plasmodium falciparum (CSP-P1-CSP and CSP-P2-CSP)
Method: single particle / : Shi D, Ma R, Tang WK, Tolia NH

EMDB-19111: 
CryoEM structure of mouse GARP-lTGFbeta1 in complex with a Fab fragment derived from an activating antibody.
Method: single particle / : Felix J, Lambert F, Marien L, van der Woning B, Savvides SN, Lucas S

PDB-8rex: 
CryoEM structure of mouse GARP-lTGFbeta1 in complex with a Fab fragment derived from an activating antibody.
Method: single particle / : Felix J, Lambert F, Marien L, van der Woning B, Savvides SN, Lucas S

EMDB-19110: 
CryoEM structure of human GARP-lTGFbeta1 in complex with a Fab fragment derived from an activating antibody.
Method: single particle / : Felix J, Lambert F, Marien L, van der Woning B, Savvides SN, Lucas S

PDB-8rew: 
CryoEM structure of human GARP-lTGFbeta1 in complex with a Fab fragment derived from an activating antibody.
Method: single particle / : Felix J, Lambert F, Marien L, van der Woning B, Savvides SN, Lucas S

EMDB-45206: 
Reconstituted P400 Subcomplex of the human TIP60 complex
Method: single particle / : Yang Z, Mameri A, Florez Ariza AJ, Cote J, Nogales E

EMDB-45240: 
P400 subcomplex of the native human TIP60 complex
Method: single particle / : Yang Z, Mameri A, Florez Ariza AJ, Cote J, Nogales E

EMDB-45252: 
ARP module of the human TIP60 complex
Method: single particle / : Yang Z, Mameri A, Florez Ariza AJ, Cote J, Nogales E

PDB-9c57: 
Reconstituted P400 Subcomplex of the human TIP60 complex
Method: single particle / : Yang Z, Mameri A, Florez Ariza AJ, Cote J, Nogales E

PDB-9c62: 
P400 subcomplex of the native human TIP60 complex
Method: single particle / : Yang Z, Mameri A, Florez Ariza AJ, Cote J, Nogales E

PDB-9c6n: 
ARP module of the human TIP60 complex
Method: single particle / : Yang Z, Mameri A, Florez Ariza AJ, Cote J, Nogales E

EMDB-45176: 
TRRAP module of the human TIP60 complex
Method: single particle / : Yang Z, Mameri A, Florez Ariza AJ, Cote J, Nogales E

EMDB-45180: 
Second BAF53a of the human TIP60 complex
Method: single particle / : Yang Z, Mameri A, Florez Ariza AJ, Cote J, Nogales E

PDB-9c47: 
TRRAP module of the human TIP60 complex
Method: single particle / : Yang Z, Mameri A, Florez Ariza AJ, Cote J, Nogales E

PDB-9c4b: 
Second BAF53a of the human TIP60 complex
Method: single particle / : Yang Z, Mameri A, Florez Ariza AJ, Cote J, Nogales E

EMDB-42371: 
Mouse apoferritin imaged with a square aperture
Method: single particle / : Chua EYD, Alink LM, Kopylov M, Johnston J, Einsenstein F, de Marco A

EMDB-42372: 
Mouse apoferritin imaged with a round aperture
Method: single particle / : Chua EYD, Alink LM, Kopylov M, Johnston J, Einsenstein F, de Marco A

EMDB-42373: 
Mouse apoferritin imaged with a square aperture with P2 projection lens rotation, reconstructed from 25,000 particles
Method: single particle / : Chua EYD, Alink LM, Kopylov M, Johnston J, Einsenstein F, de Marco A

EMDB-42374: 
Mouse apoferritin imaged with a round aperture without P2 projection lens rotation, reconstructed from 25,000 particles
Method: single particle / : Chua EYD, Alink LM, Kopylov M, Johnston J, Einsenstein F, de Marco A

EMDB-16820: 
Cryo-EM structure of a pre-dimerized murine IL-12 complete extracellular signaling complex (Class 1).
Method: single particle / : Felix J, Bloch Y, Savvides SN

EMDB-16821: 
Cryo-EM structure of a pre-dimerized murine IL-12 complete extracellular signaling complex (Class 2).
Method: single particle / : Felix J, Bloch Y, Savvides SN

EMDB-16822: 
Cryo-EM structure of the murine IL-12 complete extracellular signaling complex (Class 1).
Method: single particle / : Felix J, Bloch Y, Savvides SN

EMDB-16823: 
Cryo-EM structure of the murine IL-12 complete extracellular signaling complex (Class 2).
Method: single particle / : Felix J, Bloch Y, Savvides SN

EMDB-16824: 
Cryo-EM structure of a pre-dimerized human IL-23 complete extracellular signaling complex.
Method: single particle / : Bloch Y, Felix J, Savvides SN

EMDB-17580: 
Cryo-EM structure of a pre-dimerized murine IL-12 complete extracellular signaling complex (Class 1), obtained after local refinement.
Method: single particle / : Felix J, Bloch Y, Savvides SN

PDB-8odz: 
Cryo-EM structure of a pre-dimerized murine IL-12 complete extracellular signaling complex (Class 1).
Method: single particle / : Felix J, Bloch Y, Savvides SN

PDB-8oe0: 
Cryo-EM structure of a pre-dimerized murine IL-12 complete extracellular signaling complex (Class 2).
Method: single particle / : Felix J, Bloch Y, Savvides SN

PDB-8oe4: 
Cryo-EM structure of a pre-dimerized human IL-23 complete extracellular signaling complex.
Method: single particle / : Bloch Y, Felix J, Savvides SN

PDB-8pb1: 
Cryo-EM structure of a pre-dimerized murine IL-12 complete extracellular signaling complex (Class 1), obtained after local refinement.
Method: single particle / : Felix J, Bloch Y, Savvides SN

EMDB-42851: 
5x5 tiled montage tomogram of a holey carbon grid with apoferritin imaged with a square electron beam
Method: electron tomography / : Chua EYD, Alink LM, Kopylov M, Johnston J, Einsenstein F, de Marco A

EMDB-42879: 
3x3 tiled montage tomogram of a yeast lamella imaged with a square electron beam
Method: electron tomography / : Chua EYD, Alink LM, Kopylov M, Johnston J, Einsenstein F, de Marco A

EMDB-16403: 
Subtomogram averaging of a coronavirus spike (ChAdOx1 19E6) in C3 symmetry
Method: subtomogram averaging / : Ni T, Mendonca L, Zhu Y, Zhang P

EMDB-16404: 
Subtomogram averaging of a coronavirus spike (ChAdOx1 19E6) in C1 symmetry
Method: subtomogram averaging / : Ni T, Mendonca L, Zhu Y, Zhang P

EMDB-16405: 
Subtomogram averaging of a coronavirus spike (ChAdOx1 19E) in C3 symmetry
Method: subtomogram averaging / : Ni T, Mendonca L, Zhu Y, Zhang P

EMDB-16406: 
Subtomogram averaging of a coronavirus spike in situ (ChAdOx1 19E) in C1 symmetry
Method: subtomogram averaging / : Ni T, Mendonca L, Zhu Y, Zhang P

EMDB-16697: 
Subtomogram averaging of a coronavirus spike (ChAdOx1 19E6) in C1 symmetry after 3D classification
Method: subtomogram averaging / : Ni T, Mendonca L, Zhu Y, Zhang P

EMDB-14717: 
SARS CoV Spike protein, Closed C3 conformation
Method: single particle / : Toelzer C, Gupta K, Yadav SKN, Buzas D, Borucu U, Schaffitzel C, Berger I

EMDB-14718: 
SARS CoV Spike protein, Closed C1 conformation
Method: single particle / : Toelzer C, Gupta K, Yadav SKN, Buzas D, Borucu U, Schaffitzel C, Berger I

EMDB-14724: 
SARS CoV Spike protein, Open conformation
Method: single particle / : Toelzer C, Gupta K, Yadav SKN, Buzas D, Borucu U, Schaffitzel C, Berger I

PDB-7zh1: 
SARS CoV Spike protein, Closed C3 conformation
Method: single particle / : Toelzer C, Gupta K, Yadav SKN, Buzas D, Borucu U, Schaffitzel C, Berger I

PDB-7zh2: 
SARS CoV Spike protein, Closed C1 conformation
Method: single particle / : Toelzer C, Gupta K, Yadav SKN, Buzas D, Borucu U, Schaffitzel C, Berger I
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