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Showing 1 - 50 of 208 items for (author: chirgadze & d)

EMDB-52860:
Ku70/80 bound to 147 bp nucleosome
Method: single particle / : Hall C, Chaplin AK

EMDB-52861:
Ku70/80 bound to 153 bp nucleosome
Method: single particle / : Hall C, Chaplin AK

EMDB-52879:
Ku70/80 with Ku70 linker and SAP domain bound to a 153 bp H2AX nucleosome
Method: single particle / : Hall C, Chaplin AK

EMDB-52912:
Ku70/80 bound to a 153 bp H2AX nucleosome
Method: single particle / : Hall C, Chaplin AK

EMDB-52958:
DNA-PK bound to a 153 bp H2AX nucleosome model 1
Method: single particle / : Hall C, Chaplin AK

EMDB-53025:
DNA-PK bound to 153 bp H2AX nucleosome model 2
Method: single particle / : Hall C, Chaplin A

EMDB-53026:
Ku80 mediated DNA-PK dimer bound to 153 bp H2AX nucleosome
Method: single particle / : Hall C, Chaplin AK

EMDB-53237:
DNA-PK bound to 153 bp H2AX nucleosome with ATPyS
Method: single particle / : Hall C, Chaplin AK

PDB-9igw:
Ku70/80 bound to 147 bp nucleosome
Method: single particle / : Hall C, Chaplin AK

PDB-9igx:
Ku70/80 bound to 153 bp nucleosome
Method: single particle / : Hall C, Chaplin AK

PDB-9q80:
Ku70/80 with Ku70 linker and SAP domain bound to a 153 bp H2AX nucleosome
Method: single particle / : Hall C, Chaplin AK

PDB-9q8x:
Ku70/80 bound to a 153 bp H2AX nucleosome
Method: single particle / : Hall C, Chaplin AK

PDB-9q9f:
DNA-PK bound to a 153 bp H2AX nucleosome model 1
Method: single particle / : Hall C, Chaplin AK

PDB-9qcr:
DNA-PK bound to 153 bp H2AX nucleosome model 2
Method: single particle / : Hall C, Chaplin A

PDB-9qcs:
Ku80 mediated DNA-PK dimer bound to 153 bp H2AX nucleosome
Method: single particle / : Hall C, Chaplin AK

PDB-9qms:
DNA-PK bound to 153 bp H2AX nucleosome with ATPyS
Method: single particle / : Hall C, Chaplin AK

EMDB-52749:
Cryo-EM structure of Shigella flexneri LptDE bound by a Bicyclic peptide molecule (Compound 1)
Method: single particle / : Allyjaun S, Newman H, Dunbar E, Hardwick SW, Chirgadze DY, van den Berg B, Hubbard J

EMDB-52750:
Cryo-EM structure of Shigella flexneri LptDE bound by a Bicyclic peptide molecule (Compound 2)
Method: single particle / : Allyjaun S, Newman H, Dunbar E, Hardwick SW, Chirgadze DY, van den Berg B, Hubbard J

EMDB-52751:
Cryo-EM structure of Shigella flexneri LptDE bound by a Bicyclic peptide molecule (Compound 3)
Method: single particle / : Allyjaun S, Newman H, Dunbar E, Hardwick SW, Chirgadze DY, van den Berg B, Hubbard J

EMDB-52752:
Cryo-EM structure of Shigella flexneri LptDE bound by a Bicyclic peptide molecule (Compound 4)
Method: single particle / : Allyjaun S, Newman H, Dunbar E, Hardwick SW, Chirgadze DY, van den Berg B, Hubbard J

EMDB-52753:
Cryo-EM structure of Shigella flexneri LptDE bound by a Bicyclic peptide molecule (Compound 5)
Method: single particle / : Allyjaun S, Newman H, Dunbar E, Hardwick SW, Chirgadze DY, van den Berg B, Hubbard J

EMDB-52754:
Cryo-EM structure of Shigella flexneri LptDE in complex with a Bicyclic Peptide binder (Compound 12)
Method: single particle / : Allyjaun S, Dunbar E, Hardwick SW, Chirgadze DY, Hubbard J, van den Berg B, Newman H

EMDB-52755:
Cryo-EM structure of Shigella flexneri LptDE bound by a Bicyclic peptide molecule (Compound 13)
Method: single particle / : Allyjaun S, Newman H, Dunbar E, Hardwick SW, Chirgadze DY, van den Berg B, Hubbard J

EMDB-52896:
Cryo-EM structure of Shigella flexneri LptDE bound by a Bicyclic peptide molecule (Compound 16)
Method: single particle / : Allyjaun S, Newman H, Chirgadze DY, Hardwick SW, Hubbard J, van den Berg B, Dunbar E

PDB-9i92:
Cryo-EM structure of Shigella flexneri LptDE bound by a Bicyclic peptide molecule (Compound 1)
Method: single particle / : Allyjaun S, Newman H, Dunbar E, Hardwick SW, Chirgadze DY, van den Berg B, Hubbard J

PDB-9i93:
Cryo-EM structure of Shigella flexneri LptDE bound by a Bicyclic peptide molecule (Compound 2)
Method: single particle / : Allyjaun S, Newman H, Dunbar E, Hardwick SW, Chirgadze DY, van den Berg B, Hubbard J

PDB-9i94:
Cryo-EM structure of Shigella flexneri LptDE bound by a Bicyclic peptide molecule (Compound 3)
Method: single particle / : Allyjaun S, Newman H, Dunbar E, Hardwick SW, Chirgadze DY, van den Berg B, Hubbard J

PDB-9i95:
Cryo-EM structure of Shigella flexneri LptDE bound by a Bicyclic peptide molecule (Compound 4)
Method: single particle / : Allyjaun S, Newman H, Dunbar E, Hardwick SW, Chirgadze DY, van den Berg B, Hubbard J

PDB-9i96:
Cryo-EM structure of Shigella flexneri LptDE bound by a Bicyclic peptide molecule (Compound 5)
Method: single particle / : Allyjaun S, Newman H, Dunbar E, Hardwick SW, Chirgadze DY, van den Berg B, Hubbard J

PDB-9i97:
Cryo-EM structure of Shigella flexneri LptDE in complex with a Bicyclic Peptide binder (Compound 12)
Method: single particle / : Allyjaun S, Dunbar E, Hardwick SW, Chirgadze DY, Hubbard J, van den Berg B, Newman H

PDB-9i98:
Cryo-EM structure of Shigella flexneri LptDE bound by a Bicyclic peptide molecule (Compound 13)
Method: single particle / : Allyjaun S, Newman H, Dunbar E, Hardwick SW, Chirgadze DY, van den Berg B, Hubbard J

PDB-9q8n:
Cryo-EM structure of Shigella flexneri LptDE bound by a Bicyclic peptide molecule (Compound 16)
Method: single particle / : Allyjaun S, Newman H, Chirgadze DY, Hardwick SW, Hubbard J, van den Berg B, Dunbar E

EMDB-17636:
Cryo-EM structure of the full-length human alpha1beta3 GABA(A) receptor (babba arrangement) in complex with nanobody Nb25, expressed with a 5-fold excess of beta3 over alpha1
Method: single particle / : Sente A, Malinauskas T, Naydenova K, Hardwick SW, Chirgadze DY, Aricescu AR

PDB-8pet:
Cryo-EM structure of the full-length human alpha1beta3 GABA(A) receptor (babba arrangement) in complex with nanobody Nb25, expressed with a 5-fold excess of beta3 over alpha1
Method: single particle / : Sente A, Malinauskas T, Naydenova K, Hardwick SW, Chirgadze DY, Aricescu AR

EMDB-51378:
Structure of the human mitochondrial pyruvate carrier inhibited by a UK5099-derivative
Method: single particle / : Sichrovsky M, Lacabanne D, Ruprecht JJ, Rana JJ, Stanik K, Dionysopoulou M, Sowton AP, King MS, Jones S, Cooper L, Hardwick SW, Paris G, Chirgadze DY, Ding S, Fearnley IMF, Palmer S, Pardon E, Steyaert J, Leone V, Forrest LR, Tavoulari S, Kunji ERS

EMDB-51379:
Structure of the human mitochondrial pyruvate carrier inhibited by zaprinast
Method: single particle / : Sichrovsky M, Lacabanne D, Ruprecht JJ, Rana JJ, Stanik K, Dionysopoulou M, Sowton AP, King MS, Jones S, Cooper L, Hardwick SW, Paris G, Chirgadze DY, Ding S, Fearnley IM, Palmer S, Pardon E, Steyaert J, Leone V, Forrest LR, Tavoulari S, Kunji ERS

EMDB-51381:
Structure of the human mitochondrial pyruvate carrier inhibited by mitoglitazone
Method: single particle / : Sichrovsky M, Lacabanne D, Ruprecht JJ, Rana JJ, Stanik K, Dionysopoulou M, King MS, Sowton AP, Jones S, Cooper L, Hardwick SW, Paris G, Chirgadze DY, Ding S, Fearnley IM, Palmer S, Pardon E, Steyaert J, Leone V, Forrest LR, Tavoulari S, Kunji ERS

PDB-9giv:
Structure of the human mitochondrial pyruvate carrier inhibited by a UK5099-derivative
Method: single particle / : Sichrovsky M, Lacabanne D, Ruprecht JJ, Rana JJ, Stanik K, Dionysopoulou M, Sowton AP, King MS, Jones S, Cooper L, Hardwick SW, Paris G, Chirgadze DY, Ding S, Fearnley IMF, Palmer S, Pardon E, Steyaert J, Leone V, Forrest LR, Tavoulari S, Kunji ERS

PDB-9giw:
Structure of the human mitochondrial pyruvate carrier inhibited by zaprinast
Method: single particle / : Sichrovsky M, Lacabanne D, Ruprecht JJ, Rana JJ, Stanik K, Dionysopoulou M, Sowton AP, King MS, Jones S, Cooper L, Hardwick SW, Paris G, Chirgadze DY, Ding S, Fearnley IM, Palmer S, Pardon E, Steyaert J, Leone V, Forrest LR, Tavoulari S, Kunji ERS

PDB-9gix:
Structure of the human mitochondrial pyruvate carrier in the apo-state
Method: single particle / : Sichrovsky M, Lacabanne D, Ruprecht JJ, Rana JJ, Stanik K, Dionysopoulou M, Sowton AP, King MS, Jones S, Cooper L, Hardwick SW, Paris G, Chirgadze DY, Ding S, Fearnley IM, Palmer S, Pardon E, Steyaert J, Leone V, Forrest LR, Tavoulari S, Kunji ERS

PDB-9giy:
Structure of the human mitochondrial pyruvate carrier inhibited by mitoglitazone
Method: single particle / : Sichrovsky M, Lacabanne D, Ruprecht JJ, Rana JJ, Stanik K, Dionysopoulou M, King MS, Sowton AP, Jones S, Cooper L, Hardwick SW, Paris G, Chirgadze DY, Ding S, Fearnley IM, Palmer S, Pardon E, Steyaert J, Leone V, Forrest LR, Tavoulari S, Kunji ERS

EMDB-51963:
Cryo-EM structure of the human GABAA receptor alpha1 subunit in complex with the assembly factor NACHO/TMEM35A
Method: single particle / : Hooda Y, Sente A, Judy RM, Smalinskaite L, Peak-Chew S, Naydenova K, Malinauskas T, Hardwick SW, Chirgadze DY, Aricescu AR, Hegde RS

PDB-9h9e:
Cryo-EM structure of the human GABAA receptor alpha1 subunit in complex with the assembly factor NACHO/TMEM35A
Method: single particle / : Hooda Y, Sente A, Judy RM, Smalinskaite L, Peak-Chew S, Naydenova K, Malinauskas T, Hardwick SW, Chirgadze DY, Aricescu AR, Hegde RS

EMDB-16862:
Molecular Mechanism of trypanosomal AQP2
Method: single particle / : Weyand SN, Matusevicius M, Yamashita K

EMDB-16863:
Molecular Mechanism of trypanosomal AQP2
Method: single particle / : Weyand SN, Matusevicius M, Yamashita K

EMDB-16864:
Molecular Mechanism of trypanosomal AQP2
Method: single particle / : Weyand SN, Matusevicius M, Yamashita K

EMDB-16543:
Structure of human mitochondrial RNase P in complex with mitochondrial pre-tRNA-His(5,Ser)
Method: single particle / : MEYNIER V, HARDWICK S, CATALA M, ROSKE J, OERUM S, CHIRGADZE D, BARRAUD P, LUISI B, TISNE C

EMDB-16544:
Structure of human mitochondrial RNase Z in complex with mitochondrial pre-tRNA-His(0,Ser)
Method: single particle / : MEYNIER V, HARDWICK S, CATALA M, ROSKE J, OERUM S, CHIRGADZE D, BARRAUD P, YU W, LUISI B, TISNE C

EMDB-16545:
Structure of human mitochondrial CCA-adding enzyme in complex with mitochondrial pre-tRNA-Ile
Method: single particle / : MEYNIER V, HARDWICK S, CATALA M, ROSKE J, OERUM S, CHIRGADZE D, BARRAUD P, LUISI B, TISNE C

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Feb 9, 2022. New format data for meta-information of EMDB entries

New format data for meta-information of EMDB entries

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  • The previous official version 1.9 will be removed from the archive.

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Oct 5, 2021. Nobel Prize for mechanically activated and temperature-gated ion channels

Nobel Prize for mechanically activated and temperature-gated ion channels

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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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