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Showing all 43 items for (author: fay & jf)
EMDB-42601:
CryoEM structure of Kappa Opioid Receptor bound to a semi-peptide and Gi1
Method: single particle / : Fay JF, Che T
EMDB-43732:
momSalB bound Kappa Opioid Receptor in complex Gi1
Method: single particle / : Fay JF, Che T
EMDB-43733:
GR89,696 bound Kappa Opioid Receptor in complex with Gz
Method: single particle / : Fay JF, Che T
EMDB-43734:
GR89,696 bound Kappa Opioid Receptor in complex with gustducin
Method: single particle / : Fay JF, Che T
EMDB-29026:
CryoEM structure of Kappa Opioid Receptor bound to a semi-peptide and Gi1
Method: single particle / : Fay JF, Che T
EMDB-41876:
momSalB bound Kappa Opioid Receptor in complex with GoA
Method: single particle / : Fay JF, Che T
EMDB-27804:
momSalB bound Kappa Opioid Receptor in complex with Gi1
Method: single particle / : Fay JF, Che T
EMDB-27805:
momSalB bound Kappa Opioid Receptor in complex with GoA
Method: single particle / : Fay JF, Che T
EMDB-27806:
GR89,696 bound Kappa Opioid Receptor in complex with gustducin
Method: single particle / : Fay JF, Che T
EMDB-27807:
GR89,696 bound Kappa Opioid Receptor in complex with Gz
Method: single particle / : Fay JF, Che T
EMDB-29301:
Neurotensin receptor allosterism revealed in complex with a biased allosteric modulator
Method: single particle / : Krumm BE, Diberto JF, Olsen RHJ, Kang H, Slocum ST, Zhang S, Strachan RT, Fay JF, Roth BL
EMDB-29302:
CryoEM structure of Go-coupled NTSR1 with a biased allosteric modulator
Method: single particle / : Krumm BE, DiBerto JF, Olsen RHJ, Kang H, Slocum ST, Zhang S, Strachan RT, Fay JF, Roth BL
EMDB-29303:
CryoEM structure of Go-coupled NTSR1
Method: single particle / : Krumm BE, DiBerto JF, Olsen RHJ, Kang H, Slocum ST, Zhang S, Strachan RT, Fay JF, Roth BL
EMDB-27966:
CryoEM structure of miniGq-coupled hM3Dq in complex with DCZ
Method: single particle / : Zhang S, Fay JF, Roth BL
EMDB-27967:
CryoEM structure of miniGo-coupled hM4Di in complex with DCZ
Method: single particle / : Zhang S, Fay JF, Roth BL
EMDB-27968:
CryoEM structure of miniGq-coupled hM3Dq in complex with CNO
Method: single particle / : Zhang S, Fay JF, Roth BL
EMDB-27969:
CryoEM structure of miniGq-coupled hM3R in complex with Iperoxo
Method: single particle / : Zhang S, Fay JF, Roth BL
EMDB-27970:
CryoEM structure of miniGq-coupled hM3R in complex with iperoxo (local refinement)
Method: single particle / : Zhang S, Fay JF, Roth BL
EMDB-27752:
CryoEM structure of Gq-coupled MRGPRX1 with peptide agonist BAM8-22
Method: single particle / : Liu Y, Cao C, Fay JF, Roth BL
EMDB-27753:
CryoEM structure of Gq-coupled MRGPRX1 with peptide ligand BAM8-22 and positive allosteric modulator ML382
Method: single particle / : Liu Y, Cao C, Fay JF, Roth BL
EMDB-27754:
CryoEM structure of Gq-coupled MRGPRX1 with ligand Compound-16
Method: single particle / : Liu Y, Cao C, Fay JF, Roth BL
EMDB-25401:
5-HT2B receptor bound to LSD obtained by cryo-electron microscopy (cryoEM)
Method: single particle / : Barros-Alvarez X, Cao C, Panova O, Roth BL, Skiniotis G
EMDB-25402:
5-HT2B receptor bound to LSD in complex with heterotrimeric mini-Gq protein obtained by cryo-electron microscopy (cryoEM)
Method: single particle / : Barros-Alvarez X, Kim K, Panova O, Cao C, Roth BL, Skiniotis G
EMDB-25403:
5-HT2B receptor bound to LSD in complex with beta-arrestin1 obtained by cryo-electron microscopy (cryoEM)
Method: single particle / : Barros-Alvarez X, Cao C, Panova O, Roth BL, Skiniotis G
EMDB-27633:
Cryo-EM structure of the 5HT2C receptor (INI isoform) bound to lorcaserin
Method: single particle / : Gumpper RH, Fay JF, Roth BL
EMDB-27634:
Cryo-EM structure of the 5HT2C receptor (INI isoform) bound to psilocin
Method: single particle / : Gumpper RH, Fay JF, Roth BL
EMDB-27635:
Cryo-EM structure of the 5HT2C receptor (VGV isoform) bound to lorcaserin
Method: single particle / : Gumpper RH, Fay JF, Roth BL
EMDB-27636:
Cryo-EM structure of the 5HT2C receptor (VSV isoform) bound to lorcaserin
Method: single particle / : Gumpper RH, Fay JF, Roth BL
EMDB-26597:
CryoEM structure of Go-coupled 5-HT5AR in complex with 5-CT
Method: single particle / : Zhang S, Fay JF, Roth BL
EMDB-26598:
CryoEM structure of Go-coupled 5-HT5AR in complex with Lisuride
Method: single particle / : Zhang S, Fay JF, Roth BL
EMDB-26599:
CryoEM structure of Go-coupled 5-HT5AR in complex with Methylergometrine
Method: single particle / : Zhang S, Fay JF, Roth BL
EMDB-25839:
1.78A reconstruction of mouse heavy chain apoferritin collected at 500 micrographs/hr
Method: single particle / : Peck JV, Fay JF, Strauss JD
EMDB-25840:
2.19A reconstruction of mouse heavy chain apoferritin collected at 720 micrographs/hr
Method: single particle / : Peck JV, Fay JF, Strauss JD
EMDB-25841:
1.83A reconstruction of mouse heavy chain apoferritin collected at 520 micrographs/hr
Method: single particle / : Peck JV, Fay JF, Strauss JD
EMDB-25842:
1.85A reconstruction of mouse heavy chain apoferritin collected at 346 micrographs/hr
Method: single particle / : Peck JV, Fay JF, Strauss JD
EMDB-24896:
CryoEM structure of Gq-coupled MRGPRX2 with peptide agonist Cortistatin-14
Method: single particle / : Cao C, Fay JF, Gumpper RH, Roth BL
EMDB-24897:
CryoEM structure of Gi-coupled MRGPRX2 with peptide agonist Cortistatin-14
Method: single particle / : Cao C, Fay JF, Gumpper RH, Roth BL
EMDB-24898:
CryoEM structure of Gq-coupled MRGPRX2 with small molecule agonist (R)-Zinc-3573
Method: single particle / : Cao C, Fay JF, Gumpper RH, Roth BL
EMDB-24899:
CryoEM structure of Gi-coupled MRGPRX2 with small molecule agonist (R)-Zinc-3573
Method: single particle / : Cao C, Fay JF, Gumpper RH, Roth BL
EMDB-24900:
CryoEM structure of Gq-coupled MRGPRX4 with small molecule agonist MS47134
Method: single particle / : Cao C, Fay JF, Gumpper RH, Roth BL
EMDB-7793:
Thermostablilized dephosphorylated chicken CFTR
Method: single particle / : Fay JF, Riordan JR
EMDB-7794:
Thermostabilized phosphorylated chicken CFTR
Method: single particle / : Fay JF, Riordan JR
EMDB-8470:
Cryo-EM structure of the pancreatic ATP-sensitive K+ channel SUR1/Kir6.2 in the presence of ATP and glibenclamide
Method: single particle / : Martin GM, Yoshioka C, Chen JZ, Shyng SL