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Showing 1 - 50 of 115 items for (author: d & angelo & 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-42021:
Cryo-EM structure of the TREX-2 complex in complex with the N-terminal motif of Sub2
Method: single particle / : Clarke BP, Xie Y, Ren Y

EMDB-42022:
Cryo-EM structure of the TREX-2 complex in association with Sub2
Method: single particle / : Clarke BP, Xie Y, Ren Y

PDB-8u8d:
Cryo-EM structure of the TREX-2 complex in complex with the N-terminal motif of Sub2
Method: single particle / : Clarke BP, Xie Y, Ren Y

PDB-8u8e:
Cryo-EM structure of the TREX-2 complex in association with Sub2
Method: single particle / : Clarke BP, Xie Y, Ren Y

EMDB-40739:
Cryo-EM structure of the CBC-ALYREF complex
Method: single particle / : Xie Y, Clarke BP, Ren Y

EMDB-40780:
Cryo-EM structure of the human cap binding complex (CBC)
Method: single particle / : Xie Y, Clarke BP, Ren Y

PDB-8srr:
Cryo-EM structure of the CBC-ALYREF complex
Method: single particle / : Xie Y, Clarke BP, Ren Y

PDB-8suy:
Cryo-EM structure of the human cap binding complex (CBC)
Method: single particle / : Xie Y, Clarke BP, Ren Y

EMDB-44246:
Cryo-EM structure of HIV-1 JRFL v6 Env in complex with vaccine-elicited, Membrane Proximal External Region (MPER) directed antibody DH1317.4.
Method: single particle / : Acharya P, Parsons R, Janowska K, Williams WB, Alam M, Haynes BF

EMDB-44438:
Cryo-EM structure of Thermococcus kodakarensis FttA-dependent transcription pre-termination complex containing 44 nt RNA
Method: single particle / : You L, Ebright RH

EMDB-44439:
Cryo-EM structure of Thermococcus kodakarensis FttA-dependent transcription pre-termination complex containing 52 nt RNA
Method: single particle / : You L, Ebright RH

EMDB-44454:
Cryo-EM structure of Thermococcus kodakarensis FttA-dependent transcription pre-termination complex containing 44 nt RNA
Method: single particle / : You L, Ebright RH

EMDB-44455:
Cryo-EM structure of Thermococcus kodakarensis FttA-dependent transcription pre-termination complex containing 52 nt RNA
Method: single particle / : You L, Ebright RH

EMDB-44649:
Cryo-EM structure of Thermococcus kodakarensis FttA-dependent transcription pre-termination complex containing 44 nt RNA (local refinement map)
Method: single particle / : You L, Ebright RH

EMDB-44650:
Cryo-EM structure of Thermococcus kodakarensis FttA-dependent transcription pre-termination complex containing 52 nt RNA (local refinement map)
Method: single particle / : You L, Ebright RH

PDB-9bct:
Cryo-EM structure of Thermococcus kodakarensis FttA-dependent transcription pre-termination complex containing 44 nt RNA
Method: single particle / : You L, Ebright RH

PDB-9bcu:
Cryo-EM structure of Thermococcus kodakarensis FttA-dependent transcription pre-termination complex containing 52 nt RNA
Method: single particle / : You L, Ebright RH

EMDB-43516:
Cryo-EM structure of HMPV (MPV-2cREKR)
Method: single particle / : Yu X, Langedijk JPM

EMDB-43517:
Cryo-EM structure of HMPV (MPV-2cREKR)
Method: single particle / : Yu X, Langedijk JPM

PDB-8vt2:
cryo-EM structure of HMPV (MPV-2c)
Method: single particle / : Yu X, Langedijk JPM

PDB-8vt3:
cryo-EM structure of HMPV (MPV-2cREKR)
Method: single particle / : Yu X, Langedijk JPM

EMDB-19184:
Late alpha-Synuclein fibril structure from liquid-liquid phase separations.
Method: helical / : De Simone A, Barritt JD, Chen S, Cascella R, Cecchi C, Bigi A, Jarvis JA, Chiti F, Dobson CM, Fusco G

PDB-8ri9:
Late alpha-Synuclein fibril structure from liquid-liquid phase separations.
Method: helical / : De Simone A, Barritt JD, Chen S, Cascella R, Cecchi C, Bigi A, Jarvis JA, Chiti F, Dobson CM, Fusco G

EMDB-17804:
Bat-Hp-CoV Nsp1 and eIF1 bound to the human 40S small ribosomal subunit
Method: single particle / : Schubert K, Karousis ED, Ban I, Lapointe CP, Leibundgut M, Baeumlin E, Kummerant E, Scaiola A, Schoenhut T, Ziegelmueller J, Puglisi JD, Muehlemann O, Ban N

EMDB-17805:
MERS-CoV Nsp1 bound to the human 43S pre-initiation complex
Method: single particle / : Schubert K, Karousis ED, Ban I, Lapointe CP, Leibundgut M, Baeumlin E, Kummerant E, Scaiola A, Schoenhut T, Ziegelmueller J, Puglisi JD, Muehlemann O, Ban N

PDB-8ppk:
Bat-Hp-CoV Nsp1 and eIF1 bound to the human 40S small ribosomal subunit
Method: single particle / : Schubert K, Karousis ED, Ban I, Lapointe CP, Leibundgut M, Baeumlin E, Kummerant E, Scaiola A, Schoenhut T, Ziegelmueller J, Puglisi JD, Muehlemann O, Ban N

PDB-8ppl:
MERS-CoV Nsp1 bound to the human 43S pre-initiation complex
Method: single particle / : Schubert K, Karousis ED, Ban I, Lapointe CP, Leibundgut M, Baeumlin E, Kummerant E, Scaiola A, Schoenhut T, Ziegelmueller J, Puglisi JD, Muehlemann O, Ban N

EMDB-16357:
CryoEM structure of Aspergillus nidulans UTP-glucose-1-phosphate uridylyltransferase
Method: single particle / : Han X, D Angelo C, Otamendi A, Cifuente JO, de Astigarraga E, Ochoa-Lizarralde B, Grininger M, Routier FH, Guerin ME, Fuehring J, Etxebeste O, Connell SR

PDB-8c0b:
CryoEM structure of Aspergillus nidulans UTP-glucose-1-phosphate uridylyltransferase
Method: single particle / : Han X, D Angelo C, Otamendi A, Cifuente JO, de Astigarraga E, Ochoa-Lizarralde B, Grininger M, Routier FH, Guerin ME, Fuehring J, Etxebeste O, Connell SR

EMDB-27706:
Vaccine elicited Antibody MU89 bound to CH848.D949.10.17_N133D_N138T.DS.SOSIP.664 HIV-1 Env trimer
Method: single particle / : Stalls V, Acharya P

EMDB-27776:
Vaccine elicited Antibody MU89+S27Y bound to CH848.D949.10.17_N133D_N138T.DS.SOSIP.664 HIV-1 Env trimer
Method: single particle / : Stalls V, Acharya P

PDB-8dto:
Vaccine elicited Antibody MU89 bound to CH848.D949.10.17_N133D_N138T.DS.SOSIP.664 HIV-1 Env trimer
Method: single particle / : Stalls V, Acharya P

PDB-8dy6:
Vaccine elicited Antibody MU89+S27Y bound to CH848.D949.10.17_N133D_N138T.DS.SOSIP.664 HIV-1 Env trimer
Method: single particle / : Stalls V, Acharya P

EMDB-15143:
H1-bound palindromic nucleosome, state 4
Method: single particle / : Alegrio Louro J, Beinsteiner B, Cheng TC, Patel AKM, Boopathi R, Angelov D, Hamiche A, Bednar J, Kale S, Dimitrov S, Klaholz B

EMDB-15144:
H1-bound palindromic nucleosome, state 3
Method: single particle / : Alegrio Louro J, Beinsteiner B, Cheng TC, Patel AKM, Boopathi R, Angelov D, Hamiche A, Bednar J, Kale S, Dimitrov S, Klaholz B

EMDB-15146:
H1-bound palindromic nucleosome, state 2
Method: single particle / : Alegrio Louro J, Beinsteiner B, Cheng TC, Patel AKM, Boopathi R, Angelov D, Hamiche A, Bednar J, Kale S, Dimitrov S, Klaholz B

EMDB-15147:
H1-bound palindromic nucleosome, state 5
Method: single particle / : Alegrio Louro J, Beinsteiner B, Cheng TC, Patel AKM, Boopathi R, Angelov D, Hamiche A, Bednar J, Kale S, Dimitrov S, Klaholz B

EMDB-15156:
H1-bound palindromic nucleosome, state 6
Method: single particle / : Alegrio Louro J, Beinsteiner B, Cheng TC, Patel AKM, Boopathi R, Angelov D, Hamiche A, Bednar J, Kale S, Dimitrov S, Klaholz B

EMDB-15168:
H1-free palindromic nucleosome, state A
Method: single particle / : Alegrio Louro J, Beinsteiner B, Cheng TC, Patel AKM, Boopathi R, Angelov D, Hamiche A, Bednar J, Kale S, Dimitrov S, Klaholz B

EMDB-15169:
H1-free palindromic nucleosome, state B
Method: single particle / : Alegrio Louro J, Beinsteiner B, Cheng TC, Mohideen-Abdul K, Boopathi R, Angelov D, Hamiche A, Bednar J, Kale S, Dimitrov S, Klaholz B

EMDB-15170:
H1-free palindromic nucleosome, state C
Method: single particle / : Alegrio Louro J, Beinsteiner B, Cheng TC, Patel AKM, Boopathi R, Angelov D, Hamiche A, Bednar J, Kale S, Dimitrov S, Klaholz B

EMDB-15171:
H1-free palindromic nucleosome, state D
Method: single particle / : Alegrio Louro J, Beinsteiner B, Cheng TC, Patel AKM, Boopathi R, Angelov D, Hamiche A, Bednar J, Kale S, Dimitrov S, Klaholz B

EMDB-15172:
H1-free palindromic nucleosome, state E
Method: single particle / : Alegrio Louro J, Beinsteiner B, Cheng TC, Patel AKM, Boopathi R, Angelov D, Hamiche A, Bednar J, Kale S, Dimitrov S, Klaholz B

EMDB-15173:
H1-free palindromic nucleosome, state F
Method: single particle / : Alegrio Louro J, Beinsteiner B, Cheng TC, Patel AKM, Boopathi R, Angelov D, Hamiche A, Bednar J, Kale S, Dimitrov S, Klaholz B

EMDB-15232:
H1-bound palindromic nucleosome, state 1
Method: single particle / : Alegrio Louro J, Beinsteiner B, Cheng TC, Patel AKM, Boopathi R, Angelov D, Hamiche A, Bednar J, Kale S, Dimitrov S, Klaholz B

PDB-8aag:
H1-bound palindromic nucleosome, state 1
Method: single particle / : Alegrio Louro J, Beinsteiner B, Cheng TC, Patel AKM, Boopathi R, Angelov D, Hamiche A, Bednar J, Kale S, Dimitrov S, Klaholz B

EMDB-15604:
ATG9A and ATG2A form a heteromeric complex essential for autophagosome formation
Method: single particle / : Chiduza GN, van Vliet AR, De Tito S, Punch EK, Tooze SA

EMDB-15605:
Low resolution 3D reconstruction of ATG2A from cryo-EM
Method: single particle / : Cherepanov P, Chiduza GN, Pye VE, van Vliet AR, Tooze SA

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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

  • Version 3 of the EMDB header file is now the official format.
  • 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

  • The Nobel Prize in Physiology or Medicine 2021 was awarded jointly to David Julius and Ardem Patapoutian "for their discoveries of receptors for temperature and touch."
  • EM Navigator can help to find cryo-EM structure data by both pioneers.

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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