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Showing 1 - 50 of 59 items for (author: vergara & s)

EMDB-71303: 
Cryo-EM structure of full-length human TRPV1 in the presence of alpha-humulene
Method: single particle / : Talyzina IA, Sobolevsky AI

PDB-9p6b: 
Cryo-EM structure of full-length human TRPV1 in the presence of alpha-humulene
Method: single particle / : Talyzina IA, Sobolevsky AI

EMDB-43114: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

EMDB-43115: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

EMDB-43116: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

EMDB-43117: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

EMDB-43120: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

EMDB-43121: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

EMDB-43122: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

EMDB-43123: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

EMDB-43124: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

EMDB-43125: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

EMDB-43126: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

PDB-8vb6: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

PDB-8vb7: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

PDB-8vb8: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

PDB-8vb9: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

PDB-8vbc: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

PDB-8vbd: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

PDB-8vbe: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

PDB-8vbf: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

PDB-8vbg: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

PDB-8vbh: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

PDB-8vbi: 
Kinetic intermediate states of HIV-1 RT DNA synthesis captured by cryo-EM
Method: single particle / : Vergara S, Zhou X, Santiago U, Conway JF, Sluis-Cremer N, Calero G

EMDB-18920: 
Plastid-encoded RNA polymerase (consensus map)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-18935: 
Plastid-encoded RNA polymerase
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-18952: 
Plastid-encoded RNA polymerase transcription elongation complex (consensus map)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-18964: 
Plastid-encoded RNA polymerase (Region 1)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-18965: 
Plastid-encoded RNA polymerase (Region 2)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-18974: 
Plastid-encoded RNA polymerase (Region 3)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-18975: 
Plastid-encoded RNA polymerase (Region 4)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-18976: 
Plastid-encoded RNA polymerase (Region 5)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-18982: 
Plastid-encoded RNA polymerase (Region 6)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-18983: 
Plastid-encoded RNA polymerase (Region 8)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-18985: 
Plastid-encoded RNA polymerase (Region 9)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-18986: 
Plastid-encoded RNA polymerase transcription elongation complex (Region 1)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-18995: 
Plastid-encoded RNA polymerase transcription elongation complex (Region 2)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-18996: 
Plastid-encoded RNA polymerase transcription elongation complex (Region 3)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-18998: 
Plastid-encoded RNA polymerase (Region 7)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-19007: 
Plastid-encoded RNA polymerase transcription elongation complex (Region 4)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-19010: 
Plastid-encoded RNA polymerase transcription elongation complex (PAP2-mRNA)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

PDB-8r5o: 
Plastid-encoded RNA polymerase
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

PDB-8r6s: 
Plastid-encoded RNA polymerase (Integrated model)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

PDB-8rdj: 
Plastid-encoded RNA polymerase transcription elongation complex (Integrated model)
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-19023: 
Plastid-encoded RNA polymerase transcription elongation complex
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

PDB-8ras: 
Plastid-encoded RNA polymerase transcription elongation complex
Method: single particle / : Webster MW, Pramanick I, Vergara-Cruces A

EMDB-16453: 
SARS-CoV-2 Omicron Variant Spike Trimer in complex with three 17T2 Fabs
Method: single particle / : Modrego A, Carlero D, Bueno-Carrasco MT, Santiago C, Carolis C, Arranz R, Blanco J, Magri G

EMDB-16473: 
SARS-CoV-2 spike in complex with the 17T2 neutralizing antibody Fab fragment (local refinement of RBD and Fab)
Method: single particle / : Modrego A, Carlero D, Bueno-Carrasco MT, Santiago C, Carolis C, Arranz R, Blanco J, Magri G

PDB-8c89: 
SARS-CoV-2 spike in complex with the 17T2 neutralizing antibody Fab fragment (local refinement of RBD and Fab)
Method: single particle / : Modrego A, Carlero D, Bueno-Carrasco MT, Santiago C, Carolis C, Arranz R, Blanco J, Magri G

EMDB-24607: 
SARS-CoV-2 spike in complex with the S2X58 neutralizing antibody Fab fragment (two receptor-binding domains open)
Method: single particle / : Park YJ, Seattle Structural Genomics Center for Infectious Disease (SSGCID), Veesler D
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