-検索条件
-検索結果
検索 (著者・登録者: briggs & lc)の結果全22件を表示しています
EMDB-41299:
Structural basis of peptidoglycan synthesis by E. coli RodA-PBP2 complex
EMDB-41303:
Transmembrane map
EMDB-41304:
Periplasmic map
PDB-8tj3:
Structural basis of peptidoglycan synthesis by E. coli RodA-PBP2 complex
EMDB-16703:
HIV-1 mature capsid hexamer from CA-IP6 CLPs
EMDB-16704:
HIV-1 mature capsid pentamer from CA-IP6 CLPs
EMDB-16705:
HIV-1 mature capsid hexamer next to pentamer (type I) from CA-IP6 CLPs
EMDB-16706:
HIV-1 mature capsid hexamer from CA-IP6 CLPs, bound to Nup153 peptide
EMDB-16707:
HIV-1 mature capsid pentamer from CA-IP6 CLPs bound to Nup153 peptide
EMDB-16708:
HIV-1 mature capsid hexamer next to pentamer (type I) from CA-IP6 CLPs bound to Nup153 peptide.
EMDB-16709:
HIV-1 mature capsid hexamer from CA-IP6 CLPs, bound to CPSF6 peptide.
EMDB-16710:
HIV-1 mature capsid pentamer from CA-IP6 CLPs bound to CPSF6 peptide
EMDB-16711:
HIV-1 mature capsid hexamer from CA-IP6 CLPs, bound to Sec24C peptide.
EMDB-16712:
HIV-1 mature capsid pentamer from CA-IP6 CLPs bound to Sec24C peptide
EMDB-11329:
Structure of Disulphide-stabilized SARS-CoV-2 Spike Protein Trimer (x2 disulphide-bond mutant, G413C, V987C, single Arg S1/S2 cleavage site)
EMDB-11330:
Structure of Disulphide-stabilized SARS-CoV-2 Spike Protein Trimer (x1 disulphide-bond mutant, S383C, D985C, K986P, V987P, single Arg S1/S2 cleavage site) in Closed State
EMDB-11331:
Structure of Disulphide-stabilized SARS-CoV-2 Spike Protein Trimer (x1 disulphide-bond mutant, S383C, D985C, K986P, V987P, single Arg S1/S2 cleavage site) in Locked State
EMDB-11332:
Structure of SARS-CoV-2 Spike Protein Trimer (single Arg S1/S2 cleavage site) in Closed State
EMDB-11333:
Structure of SARS-CoV-2 Spike Protein Trimer (K986P, V987P, single Arg S1/S2 cleavage site) in Closed State
EMDB-11334:
Structure of SARS-CoV-2 Spike Protein Trimer (K986P, V987P, single Arg S1/S2 cleavage site) in Locked State
EMDB-1191:
Conformational changes in the AAA ATPase p97-p47 adaptor complex.
EMDB-1192:
Conformational changes in the AAA ATPase p97-p47 adaptor complex.