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Showing 1 - 50 of 174 items for (author: rep & a)

EMDB-54376:
Structure of human 1918 influenza A polymerase heterotrimer in complex with WSN NEP.
Method: single particle / : Rep A, Wang F, Chen K, Carrique L, Grimes JM, Fodor M

PDB-9ryc:
Structure of human 1918 influenza A polymerase heterotrimer in complex with WSN NEP.
Method: single particle / : Rep A, Wang F, Chen K, Carrique L, Grimes JM, Fodor M

EMDB-54287:
Structure of human 1918 influenza A polymerase heterotrimer in complex with 1918 NEP.
Method: single particle / : Rep A, Wang F, Chen K, Carrique L, Grimes JM, Fodor M

PDB-9rve:
Structure of human 1918 influenza A polymerase heterotrimer in complex with 1918 NEP.
Method: single particle / : Rep A, Wang F, Chen K, Carrique L, Grimes JM, Fodor M

EMDB-54068:
SIVtal integrase in complex with RNA stem-loop (focused refinement of the filament repeat unit)
Method: single particle / : Singer MR, Cherepanov P

PDB-9rmu:
SIVtal integrase in complex with RNA stem-loop (focused refinement of the filament repeat unit)
Method: single particle / : Singer MR, Cherepanov P

EMDB-54070:
CryoEM reconstruction of integrase filament at the lumen of native HIV-1 cores (box size 47.3 nm)
Method: single particle / : Cherepanov P, Singer MR, Hope J, Zhang P

EMDB-54071:
CryoEM reconstruction of integrase filament at the lumen of native HIV-1 cores (box size 34.2 nm)
Method: single particle / : Cherepanov P, Singer MR, Hope J, Zhang P

EMDB-55409:
HIV-1 integrase filament at the luminal side of capsid lattice by subtomogram averaging.
Method: subtomogram averaging / : Cherepanov P, Chenavier F, Hope J, Nans A, Zhang P

PDB-9rmx:
CryoEM reconstruction of integrase filament at the lumen of native HIV-1 cores (box size 34.2 nm)
Method: single particle / : Cherepanov P, Singer MR, Hope J, Zhang P

EMDB-54067:
SIVtal integrase in complex with RNA stem-loop (double filament reconstructed by global refinement)
Method: single particle / : Singer MR, Cherepanov P

EMDB-64812:
Phycobilisome Rx rod from Gloeobacter violaceus PCC 7421
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

EMDB-64813:
Phycobilisome rod R2 from Gloeobacter violaceus PCC 7421
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

EMDB-64814:
Phycobilisome rod R3 from Gloeobacter violaceus PCC 7421
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

EMDB-64815:
Phycobilisome core from Gloeobacter violaceus PCC 7421
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

EMDB-64816:
Phycobilisome allophycocyanin hexamer C from Gloeobacter violaceus PCC 7421
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

EMDB-64817:
Phycobilisome rod R1 from Gloeobacter violaceus PCC 7421
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

EMDB-64828:
Phycobilisome from Gloeobacter violaceus PCC 7421
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

EMDB-64851:
Phycobilisome from Gloeobacter violaceus PCC 7421, conformation with diverging rods
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

EMDB-64852:
Phycobilisome from Gloeobacter violaceus PCC 7421, conformation with parallel rods
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

EMDB-64868:
Phycobilisome from Gloeobacter violaceus PCC 7421,composite map
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

PDB-9v7g:
Phycobilisome Rx rod from Gloeobacter violaceus PCC 7421
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

PDB-9v7h:
Phycobilisome rod R2 from Gloeobacter violaceus PCC 7421
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

PDB-9v7i:
Phycobilisome rod R3 from Gloeobacter violaceus PCC 7421
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

PDB-9v7j:
Phycobilisome core from Gloeobacter violaceus PCC 7421
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

PDB-9v7k:
Phycobilisome allophycocyanin hexamer C from Gloeobacter violaceus PCC 7421
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

PDB-9v7l:
Phycobilisome rod R1 from Gloeobacter violaceus PCC 7421
Method: single particle / : Burtseva AD, Baymukhametov TN, Slonimskiy YB, Popov VO, Sluchanko NN, Boyko KM

EMDB-64272:
Structure of Modified adeno-associated viral vector, AAV5-BCD
Method: single particle / : Zhang H, Burtseva AD, Strelkova AN, Perepelkina MP, Iurlova EV, Gershovich PM, Prokof'ev AV, Kolesnichenko AS, Gulnova AR, Nurtdinov RF, Vasilev AA, Yakovlev PA, Popov VO, Boyko KM

PDB-9umb:
Structure of Modified adeno-associated viral vector, AAV5-BCD
Method: single particle / : Zhang H, Burtseva AD, Strelkova AN, Perepelkina MP, Iurlova EV, Gershovich PM, Prokof'ev AV, Kolesnichenko AS, Gulnova AR, Nurtdinov RF, Vasilev AA, Yakovlev PA, Popov VO, Boyko KM

EMDB-50092:
HIV-1 envelope glycoprotein (BG505 gp140 SOSIP.664) trimer in complex with three copies of ELC07 broadly neutralizing antibody.
Method: single particle / : Hope J, Alguel Y, Nans A, Cherepanov P

PDB-9f02:
HIV-1 envelope glycoprotein (BG505 gp140 SOSIP.664) trimer in complex with three copies of ELC07 broadly neutralizing antibody.
Method: single particle / : Hope J, Alguel Y, Nans A, Cherepanov P

EMDB-50020:
HIV-1 envelope glycoprotein (BG505 gp140 SOSIP.664) trimer in complex with ELC07 broadly neutralizing antibody.
Method: single particle / : Hope J, Alguel Y, Nans A, Cherepanov P

PDB-9evz:
HIV-1 envelope glycoprotein (BG505 gp140 SOSIP.664) trimer in complex with ELC07 broadly neutralizing antibody.
Method: single particle / : Hope J, Alguel Y, Nans A, Cherepanov P

EMDB-50326:
Betaglycan in complex with TGF-b1
Method: single particle / : Wieteska L, Coleman JA, Hinck AP

EMDB-50333:
Betaglycan Orphan Domain (ratBGo) in complex with TGF-b1 and extracellular domain of TGFBRII
Method: single particle / : Wieteska L, Cherepanov P, Punch E, Hinck AP, Hill CS

EMDB-50519:
Zebrafish Betaglycan Orphan Domain (zfBGo) in complex with TGF-B3 and extracellular domains of TGFBRI and TGFBRII
Method: single particle / : Wieteska L, Coleman JA, Hinck AP

EMDB-50524:
Zebrafish Betaglycan Orphan Domain (zfBGo) in complex with TGF-b1 and extracellular domain of TGFBRII
Method: single particle / : Wieteska L, Coleman JA, Hinck AP

PDB-9fdy:
Betaglycan Orphan Domain (ratBGo) in complex with TGF-b1 and extracellular domain of TGFBRII
Method: single particle / : Wieteska L, Cherepanov P, Punch E, Hinck AP, Hill CS

PDB-9fk5:
Zebrafish Betaglycan Orphan Domain (zfBGo) in complex with TGF-B3 and extracellular domains of TGFBRI and TGFBRII
Method: single particle / : Wieteska L, Coleman JA, Hinck AP

PDB-9fkp:
Zebrafish Betaglycan Orphan Domain (zfBGo) in complex with TGF-b1 and extracellular domain of TGFBRII
Method: single particle / : Wieteska L, Coleman JA, Hinck AP

EMDB-43554:
In vitro reconstituted human chromatin
Method: electron tomography / : Uckelmann M, Taveneau C, Levina V, Trepout S, de Marco A, Davidovich C

EMDB-51184:
CryoEM structure of influenza A RNP-like particle single-stranded assembled with a 12-mer RNA.
Method: helical / : Chenavier F, Ruigrok RWH, Schoehn G, Ballandras-Colas A, Crepin T

EMDB-51185:
CryoEM structure of influenza A RNP-like particle double-stranded assembled with a 12-mer RNA.
Method: helical / : Chenavier F, Ruigrok RWH, Schoehn G, Ballandras-Colas A, Crepin T

EMDB-51186:
CryoEM structure of influenza A RNP-like particle double-stranded assembled with a 14-mer RNA.
Method: helical / : Chenavier F, Ruigrok RWH, Schoehn G, Ballandras-Colas A, Crepin T

EMDB-51187:
Focused reconstruction on strand 2 of the influenza A RNP-like particle double-stranded assembled with a 18-mer RNA.
Method: helical / : Chenavier F, Ruigrok RWH, Schoehn G, Ballandras-Colas A, Crepin T

EMDB-51188:
CryoEM structure of the antiparallel double-stranded influenza A RNP-like particle with a 18-mer RNA.
Method: helical / : Chenavier F, Ruigrok RWH, Schoehn G, Ballandras-Colas A, Crepin T

EMDB-51189:
Focused reconstruction on strand 1 of the influenza A RNP-like particle double-stranded assembled with a 18-mer RNA.
Method: helical / : Chenavier F, Ruigrok RWH, Schoehn G, Ballandras-Colas A, Crepin T

PDB-9gan:
CryoEM structure of influenza A RNP-like particle single-stranded assembled with a 12-mer RNA.
Method: helical / : Chenavier F, Ruigrok RWH, Schoehn G, Ballandras-Colas A, Crepin T

PDB-9gap:
CryoEM structure of influenza A RNP-like particle double-stranded assembled with a 12-mer RNA.
Method: helical / : Chenavier F, Ruigrok RWH, Schoehn G, Ballandras-Colas A, Crepin T

PDB-9gaq:
CryoEM structure of influenza A RNP-like particle double-stranded assembled with a 14-mer RNA.
Method: helical / : Chenavier F, Ruigrok RWH, Schoehn G, Ballandras-Colas A, Crepin T

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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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