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Showing 1 - 50 of 278 items for (author: rosa & a)

EMDB-40786:
Structural basis and functional roles for Toll-like receptor binding to Latrophilin adhesion-GPCR in embryo development
Method: single particle / : Li J, Rosas GC, Arac D, Ozkan E

EMDB-40815:
BG505 SOSIP.664 in complex with wk26 human polyclonal antibodies C3V5, V1V3, N611 and base from participant 017
Method: single particle / : Karlinsey D, Ozorowski G, Ward AB

EMDB-40816:
BG505 SOSIP.664 in complex with wk26 human polyclonal antibodies gp41-N611/FP and base from participant 03
Method: single particle / : Karlinsey D, Ozorowski G, Ward AB

EMDB-40817:
BG505 SOSIP.664 in complex with wk26 human polyclonal antibodies gp41-N611/FP and base from participant 07
Method: single particle / : Karlinsey D, Ozorowski G, Ward AB

EMDB-40818:
BG505 SOSIP.664 in complex with wk26 human polyclonal antibodies gp120-GH and base from participant 09
Method: single particle / : Karlinsey D, Ozorowski G, Ward AB

EMDB-40819:
BG505 SOSIP.664 in complex with wk26 human polyclonal antibodies C3V5, V1V3, gp41-GH/FP and base from participant 11
Method: single particle / : Karlinsey D, Ozorowski G, Ward AB

EMDB-42528:
CryoEM structure of A/Perth/16/2009 H3 in complex with flu HA central stem VH1-18 antibody UCA6
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42529:
CryoEM structure of A/Michigan/45/2015 H1 in complex with flu HA central stem VH1-18 antibody 09-1B12
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42530:
CryoEM structure of A/Michigan/45/2015 H1 in complex with flu HA central stem VH1-18 antibody UCA6_N55T
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42531:
CryoEM structure of A/Perth/16/2009 H3 in complex with polyclonal Fab from mice immunized with H3 stem nanoparticles-15 days post immunization
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42532:
CryoEM structure of A/Perth/16/2009 H3 in complex with polyclonal Fab from mice immunized with H3 stem nanoparticles-28 days post immunization
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42533:
CryoEM structure of A/Shanghai/1/2013 H7 in complex with polyclonal Fab from mice immunized with H7 stem nanoparticles-15 days post-immunization
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42534:
CryoEM structure of A/Shanghai/1/2013 H7 in complex with polyclonal Fab from mice immunized with H7 stem nanoparticles-28 days post immunization
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42535:
CryoEM structure of A/Perth/16/2009 H3
Method: single particle / : Huang J, Han J, Ward AB

EMDB-42536:
CryoEM map of A/Shanghai/1/2013 H7 HA
Method: single particle / : Huang J, Han J, Ward AB

PDB-8ut3:
CryoEM structure of A/Perth/16/2009 H3 in complex with flu HA central stem VH1-18 antibody UCA6
Method: single particle / : Huang J, Han J, Ward AB

PDB-8ut4:
CryoEM structure of A/Michigan/45/2015 H1 in complex with flu HA central stem VH1-18 antibody 09-1B12
Method: single particle / : Huang J, Han J, Ward AB

PDB-8ut5:
CryoEM structure of A/Michigan/45/2015 H1 in complex with flu HA central stem VH1-18 antibody UCA6_N55T
Method: single particle / : Huang J, Han J, Ward AB

PDB-8ut6:
CryoEM structure of A/Perth/16/2009 H3 in complex with polyclonal Fab from mice immunized with H3 stem nanoparticles-15 days post immunization
Method: single particle / : Huang J, Han J, Ward AB

PDB-8ut7:
CryoEM structure of A/Perth/16/2009 H3 in complex with polyclonal Fab from mice immunized with H3 stem nanoparticles-28 days post immunization
Method: single particle / : Huang J, Han J, Ward AB

PDB-8ut8:
CryoEM structure of A/Shanghai/1/2013 H7 in complex with polyclonal Fab from mice immunized with H7 stem nanoparticles-15 days post-immunization
Method: single particle / : Huang J, Han J, Ward AB

PDB-8ut9:
CryoEM structure of A/Shanghai/1/2013 H7 in complex with polyclonal Fab from mice immunized with H7 stem nanoparticles-28 days post immunization
Method: single particle / : Huang J, Han J, Ward AB

EMDB-16903:
60S ribosomal subunit bound to the E3-UFM1 complex (native, UFM1 pulldown)
Method: single particle / : Penchev I, DaRosa PA, Becker T, Beckmann R, Kopito R

EMDB-41062:
CryoEM structure of an inward-facing MelBSt at a Na(+)-bound and sugar low-affinity conformation
Method: single particle / : Guan L

PDB-8t60:
CryoEM structure of an inward-facing MelBSt at a Na(+)-bound and sugar low-affinity conformation
Method: single particle / : Guan L

EMDB-16880:
60S ribosomal subunit bound to the E3-UFM1 complex - state 3 (native)
Method: single particle / : Penchev I, DaRosa PA, Becker T, Beckmann R, Kopito R

EMDB-16902:
60S ribosomal subunit bound to the E3-UFM1 complex - state 2 (native)
Method: single particle / : Penchev I, DaRosa PA, Becker T, Beckmann R, Kopito R

EMDB-16905:
60S ribosomal subunit bound to the E3-UFM1 complex - state 3 (in-vitro reconstitution)
Method: single particle / : Penchev I, DaRosa PA, Peter JJ, Kulathu Y, Becker T, Beckmann R, Kopito R

EMDB-16908:
60S ribosomal subunit bound to the E3-UFM1 complex - state 1 (native)
Method: single particle / : Penchev I, DaRosa PA, Becker T, Beckmann R, Kopito R

PDB-8ohd:
60S ribosomal subunit bound to the E3-UFM1 complex - state 3 (native)
Method: single particle / : Penchev I, DaRosa PA, Becker T, Beckmann R, Kopito R

PDB-8oj0:
60S ribosomal subunit bound to the E3-UFM1 complex - state 2 (native)
Method: single particle / : Penchev I, DaRosa PA, Becker T, Beckmann R, Kopito R

PDB-8oj5:
60S ribosomal subunit bound to the E3-UFM1 complex - state 3 (in-vitro reconstitution)
Method: single particle / : Penchev I, DaRosa PA, Peter JJ, Kulathu Y, Becker T, Beckmann R, Kopito R

PDB-8oj8:
60S ribosomal subunit bound to the E3-UFM1 complex - state 1 (native)
Method: single particle / : Penchev I, DaRosa PA, Becker T, Beckmann R, Kopito R

PDB-8oh2:
Structure of the Tau-PAM4 Type 1 amyloid fibril
Method: helical / : Wilkinson M, Louros N, Tsaka G, Ramakers M, Morelli C, Garcia T, Gallardo RU, D'Haeyer S, Goossens V, Audenaert D, Thal DR, Ranson NA, Radford SE, Rousseau F, Schymkowitz J

PDB-8ohi:
Structure of the Fmoc-Tau-PAM4 Type 2 amyloid fibril
Method: helical / : Wilkinson M, Louros N, Tsaka G, Ramakers M, Morelli C, Garcia T, Gallardo RU, D'Haeyer S, Goossens V, Audenaert D, Thal DR, Ranson NA, Radford SE, Rousseau F, Schymkowitz J

PDB-8ohp:
Structure of the Fmoc-Tau-PAM4 Type 3 amyloid fibril
Method: helical / : Wilkinson M, Louros N, Tsaka G, Ramakers M, Morelli C, Garcia T, Gallardo RU, D'Haeyer S, Goossens V, Audenaert D, Thal DR, Ranson NA, Radford SE, Rousseau F, Schymkowitz J

PDB-8oi0:
Structure of the Fmoc-Tau-PAM4 Type 4 amyloid fibril
Method: helical / : Wilkinson M, Louros N, Tsaka G, Ramakers M, Morelli C, Garcia T, Gallardo RU, D'Haeyer S, Goossens V, Audenaert D, Thal DR, Ranson NA, Radford SE, Rousseau F, Schymkowitz J

EMDB-41042:
S. enterica WbaP in a styrene maleic acid liponanoparticle
Method: single particle / : Dodge GJ, Imperiali B

PDB-8t53:
S. enterica WbaP in a styrene maleic acid liponanoparticle
Method: single particle / : Dodge GJ, Imperiali B

EMDB-40856:
Single particle reconstruction of the human LINE-1 ORF2p without substrate (apo)
Method: single particle / : van Eeuwen T, Taylor MS, Rout MP

EMDB-40858:
Structure of LINE-1 ORF2p with template:primer hybrid
Method: single particle / : van Eeuwen T, Taylor MS, Rout MP

EMDB-40859:
Structure of LINE-1 ORF2p with an oligo(A) template
Method: single particle / : van Eeuwen T, Taylor MS, Rout MP

PDB-8sxt:
Structure of LINE-1 ORF2p with template:primer hybrid
Method: single particle / : van Eeuwen T, Taylor MS, Rout MP

PDB-8sxu:
Structure of LINE-1 ORF2p with an oligo(A) template
Method: single particle / : van Eeuwen T, Taylor MS, Rout MP

EMDB-29493:
Cryo-EM structure of human Needle/NAIP/NLRC4 (R288A)
Method: single particle / : Matico RE, Yu X, Miller R, Somani S, Ricketts MD, Kumar N, Steele RA, Medley Q, Berger S, Faustin B, Sharma S

EMDB-29496:
Cryo-EM structure of full-length human NLRC4 inflammasome with C11 symmetry
Method: single particle / : Matico RE, Yu X, Miller R, Somani S, Ricketts MD, Kumar N, Steele RA, Medley Q, Berger S, Faustin B, Sharma S

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External links:The Nobel Prize in Physiology or Medicine 2021 - NobelPrize.org / Structure data by Ardem Patapoutian / Structure data by David Julius

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