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Showing 1 - 50 of 160 items for (author: rothe & p)

EMDB-63702:
PGS fused GPR3 dimer with antagonist AF64394
Method: single particle / : Geng C, Jun X

EMDB-63717:
GPR3 dimer with antagonist AF64394
Method: single particle / : Geng C, Jun X

EMDB-63723:
dimer-GPR3-Gs complex
Method: single particle / : Geng C, Jun X

PDB-9m88:
PGS fused GPR3 dimer with antagonist AF64394
Method: single particle / : Geng C, Jun X

PDB-9m8p:
GPR3 dimer with antagonist AF64394
Method: single particle / : Geng C, Jun X

PDB-9m8v:
dimer-GPR3-Gs complex
Method: single particle / : Geng C, Jun X

EMDB-19734:
BceABS nucleotide-free state
Method: single particle / : McAndrew MBL, Brotherton DH, Crow A

EMDB-51514:
Interaction with AK2A links AIFM1 to cellular energy metabolism. The cryo-EM structure of dimeric AIFM1 without any binding partner.
Method: single particle / : Rothemann RA, Pavlenko EA, Gerlich S, Grobushkin P, Mostert S, Stobbe D, Racho J, Stillger K, Lapacz K, Petrungaro C, Dengjel J, Neundorf I, Bano D, Mondal M, Weiss K, Ehninger D, Nguyen THD, Poepsel SP, Riemer J

EMDB-51515:
Interaction with AK2A links AIFM1 to cellular energy metabolism. The cryo-EM structure of dimeric AIFM1 engaged to MIA40.
Method: single particle / : Rothemann RA, Pavlenko EA, Gerlich S, Grobushkin P, Mostert S, Stobbe D, Racho J, Stillger K, Lapacz K, Petrungaro C, Dengjel J, Neundorf I, Bano D, Mondal M, Weiss K, Ehninger D, Nguyen THD, Poepsel SP, Riemer J

EMDB-51516:
Interaction with AK2A links AIFM1 to cellular energy metabolism. The cryo-EM structure of dimeric AIFM1 bound by AK2A.
Method: single particle / : Rothemann RA, Pavlenko EA, Gerlich S, Grobushkin P, Mostert S, Stobbe D, Racho J, Stillger K, Lapacz K, Petrungaro C, Dengjel J, Neundorf I, Bano D, Mondal M, Weiss K, Ehninger D, Nguyen THD, Poepsel SP, Riemer J

PDB-9gqy:
Interaction with AK2A links AIFM1 to cellular energy metabolism. The cryo-EM structure of dimeric AIFM1 without any binding partner.
Method: single particle / : Rothemann RA, Pavlenko EA, Gerlich S, Grobushkin P, Mostert S, Stobbe D, Racho J, Stillger K, Lapacz K, Petrungaro C, Dengjel J, Neundorf I, Bano D, Mondal M, Weiss K, Ehninger D, Nguyen THD, Poepsel SP, Riemer J

PDB-9gqz:
Interaction with AK2A links AIFM1 to cellular energy metabolism. The cryo-EM structure of dimeric AIFM1 engaged to MIA40.
Method: single particle / : Rothemann RA, Pavlenko EA, Gerlich S, Grobushkin P, Mostert S, Stobbe D, Racho J, Stillger K, Lapacz K, Petrungaro C, Dengjel J, Neundorf I, Bano D, Mondal M, Weiss K, Ehninger D, Nguyen THD, Poepsel SP, Riemer J

PDB-9gr0:
Interaction with AK2A links AIFM1 to cellular energy metabolism. The cryo-EM structure of dimeric AIFM1 bound by AK2A.
Method: single particle / : Rothemann RA, Pavlenko EA, Gerlich S, Grobushkin P, Mostert S, Stobbe D, Racho J, Stillger K, Lapacz K, Petrungaro C, Dengjel J, Neundorf I, Bano D, Mondal M, Weiss K, Ehninger D, Nguyen THD, Poepsel SP, Riemer J

EMDB-51434:
Befiradol-bound serotonin 5-HT1A receptor - Gs Protein Complex
Method: single particle / : Schneider J, Gmeiner P, Boettcher B, Rasmussen T

PDB-9gl2:
Befiradol-bound serotonin 5-HT1A receptor - Gs Protein Complex
Method: single particle / : Schneider J, Gmeiner P, Boettcher B, Rasmussen T

EMDB-51248:
NME1 94-Phosphoserine
Method: single particle / : Roderer D, Schoepf F, Fiedler D, Celik A

EMDB-51250:
NME1 94-Diphosphoserine
Method: single particle / : Roderer D, Schoepf F, Fiedler D, Celik A

EMDB-51251:
NME1 94-Oligophosphoserine
Method: single particle / : Roderer D, Schoepf F, Fiedler D, Celik A

PDB-9gd6:
NME1 94-Phosphoserine
Method: single particle / : Roderer D, Schoepf F, Fiedler D, Celik A

PDB-9gd8:
NME1 94-Diphosphoserine
Method: single particle / : Roderer D, Schoepf F, Fiedler D, Celik A

PDB-9gd9:
NME1 94-Oligophosphoserine
Method: single particle / : Roderer D, Schoepf F, Fiedler D, Celik A

EMDB-50477:
Integrative Structure of the human intron lariat Spliceosome (ILS'') (Map 1)
Method: single particle / : Rothe P, Vorlaender MK, Plaschka C

EMDB-50478:
Integrative Structure of the human intron lariat Spliceosome (ILS'') (Map 2)
Method: single particle / : Rothe P, Vorlaender MK, Plaschka C

EMDB-50479:
Integrative Structure of the human intron lariat Spliceosome (ILS'') (Map 3)
Method: single particle / : Rothe P, Vorlaender MK, Plaschka C

EMDB-50480:
Integrative Structure of the human intron lariat Spliceosome (ILS'') (Map 4)
Method: single particle / : Rothe P, Vorlaender MK, Plaschka C

EMDB-50481:
Integrative Structure of the human intron lariat Spliceosome (ILS'') (Map 5)
Method: single particle / : Rothe P, Vorlaender MK, Plaschka C

EMDB-50482:
Integrative Structure of the human intron lariat Spliceosome (ILS'')(Map 6)
Method: single particle / : Rothe P, Vorlaender MK, Plaschka C

EMDB-50483:
Integrative Structure of the human intron lariat Spliceosome (ILS'') (Map 7)
Method: single particle / : Rothe P, Vorlaender MK, Plaschka C

EMDB-50484:
Integrative Structure of the human intron lariat Spliceosome (ILS'') (Map 8)
Method: single particle / : Rothe P, Vorlaender MK, Plaschka C

EMDB-50485:
Integrative Structure of the human intron lariat Spliceosome (ILS'') (Map 9)
Method: single particle / : Rothe P, Vorlaender MK, Plaschka C

EMDB-50486:
Integrative Structure of the human intron lariat Spliceosome (ILS'') (Map 10)
Method: single particle / : Rothe P, Vorlaender MK, Plaschka C

EMDB-50487:
Integrative Structure of the human intron lariat Spliceosome (ILS'') (Map 11)
Method: single particle / : Rothe P, Vorlaender MK, Plaschka C

EMDB-50488:
Integrative Structure of the human intron lariat Spliceosome (ILS'') (Map 12)
Method: single particle / : Rothe P, Vorlaender MK, Plaschka C

EMDB-50489:
Integrative Structure of the human intron lariat Spliceosome (ILS'') (Map 13)
Method: single particle / : Rothe P, Vorlaender MK, Plaschka C

EMDB-50490:
Integrative Structure of the human intron lariat Spliceosome (ILS'')(Map14)
Method: single particle / : Rothe P, Vorlaender MK, Plaschka C

EMDB-51183:
Structure of human PHLPP2 in conformation 2
Method: single particle / : Siess K, Grishkovskaya I, Haselbach D, Leonard TA

EMDB-51182:
cryoEM map of human PHLPP2
Method: single particle / : Siess K, Grishkovskaya I, Haselbach D, Leonard TA

EMDB-19746:
TAS2R14 receptor bound to flufenamic acid and gustducin
Method: single particle / : Matzov D, Peri L, Niv M, Shalev Benami M

EMDB-19744:
TAS2R14 receptor bound to flufenamic acid and gustducin
Method: single particle / : Matzov D, Peri L, Niv M, Shalev Benami M

EMDB-19745:
TAS2R14 receptor bound to flufenamic acid and gustducin
Method: single particle / : Matzov D, Peri L, Niv M, Shalev Benami M

EMDB-45764:
CryoEM structure of the APO-BAM complex in DDM detergent
Method: single particle / : Sun D, Tegunov D, Payandeh J

EMDB-45765:
CryoEM structure of BAM in complex with the PTB1 closed-state inhibitor (in DDM detergent)
Method: single particle / : Sun D, Tegunov D, Payandeh J

EMDB-45766:
CryoEM structure of the APO-BAM complex in SMA nanodisc
Method: single particle / : Sun D, Tegunov D, Payandeh J

EMDB-45767:
Structure of BAM complexed with PTB2 ligand in detergent
Method: single particle / : Sun D, Tegunov D, Payandeh J

EMDB-45768:
CryoEM structure of BAM in complex with the PTB2 open-state inhibitor (in SMA nanodisc)
Method: single particle / : Sun D, Tegunov D, Payandeh J

PDB-9cnw:
CryoEM structure of the APO-BAM complex in DDM detergent
Method: single particle / : Sun D, Tegunov D, Payandeh J

PDB-9cnx:
CryoEM structure of BAM in complex with the PTB1 closed-state inhibitor (in DDM detergent)
Method: single particle / : Sun D, Tegunov D, Payandeh J

PDB-9cny:
CryoEM structure of the APO-BAM complex in SMA nanodisc
Method: single particle / : Sun D, Tegunov D, Payandeh J

PDB-9cnz:
Structure of BAM complexed with PTB2 ligand in detergent
Method: single particle / : Sun D, Tegunov D, Payandeh J

PDB-9co0:
CryoEM structure of BAM in complex with the PTB2 open-state inhibitor (in SMA nanodisc)
Method: single particle / : Sun D, Tegunov D, Payandeh J

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