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Showing 1 - 50 of 306 items for (author: hu & wl)

EMDB-75346:
Membrane protein solubilization and structure determination using de novo-designed amphipathic proteins
Method: single particle / : Borst AJ, Weidle C

EMDB-75350:
WRAP-TP0698
Method: single particle / : Borst AJ

EMDB-56861:
In situ ribosome from HeLa cells
Method: subtomogram averaging / : Gemin O, Babenko A, Papp G

EMDB-65360:
Structure of human proteasome ATPase-CP intermediate assembles with 15min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

EMDB-65361:
Structure of human proteasome ATPase-CP intermediate assembles with 90min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

EMDB-65362:
Structure of human proteasome ATPase-CP intermediate assembles with 90min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

EMDB-56607:
CryoEM structure of guanidinase from Nitrospira inopinata
Method: single particle / : Prokhorova I, Lecomte L, Papp G, Schreiner C, Djinovic-Carugo K

EMDB-56821:
C.t. INO80 chromatin remodeler bound to nucleosome
Method: single particle / : Lecomte L, Grozavu DM, Kolesnikova O, Eustermann S

EMDB-56855:
Cryo-EM structure of yeast ribosome solved with EasyGrid
Method: single particle / : Gemin O, Papp G

EMDB-75290:
cryoEM map for soluble OmpA beta-barrel WRAPs
Method: single particle / : Courbet A, Mihaljevic L

EMDB-75291:
cryoEM map of OmpA helical WRAP
Method: single particle / : Courbet A, Mihaljevic L

EMDB-70169:
Subtomogram Averaged Cryo-ET Structure of the 96-nm Axonemal Repeat in RSP3A-KO Tetrahymena thermophila
Method: subtomogram averaging / : Bicka MB, Ghanaeian AG, Black CB, Joachimiak EJ, Osinka AO, Majhi SM, Konopka AK, Bulska EB, Bui HB, Wloga DW

EMDB-70171:
Subtomogram Averaged Cryo-ET Structure of the 96-nm Axonemal Repeat in RSP3C-KO Tetrahymena thermophila
Method: subtomogram averaging / : Bicka MB, Ghanaeian AG, Black CB, Joachimiak EJ, Osinka AO, Majhi SM, Konopka AK, Bulska EB, Bui HB, Wloga DW

EMDB-70172:
Subtomogram Averaged Cryo-ET Structure of the 96-nm Axonemal Repeat in RSP3A-HA-BCCP Tetrahymena thermophila
Method: subtomogram averaging / : Bicka MB, Ghanaeian AG, Black CB, Joachimiak EJ, Osinka AO, Majhi SM, Konopka AK, Bulska EB, Bui HB, Wloga DW

EMDB-74113:
Competition for different elements of the nucleosome acidic patch yields distinct functional outcomes. VHH 1B2
Method: single particle / : Chakraborty U, Saccone EC, Becerra GC, Khan LF, Arslanovic N, Aguilar R, Gloor SL, Hunt SR, Folkwein HJ, Husby NL, Maier KE, Marunde MR, Schomburg NK, Vaidya A, Cowles MW, Venters BJ, Kassavetis G, Sun ZW, Kadonaga JT, Armache JP, Keogh MC, Tyler JK

EMDB-74114:
Competition for different elements of the nucleosome acidic patch yields distinct functional outcomes. VHH 1G1
Method: single particle / : Chakraborty U, Saccone EC, Becerra GC, Khan LF, Arslanovic N, Aguilar R, Gloor SL, Hunt SR, Folkwein HJ, Husby NL, Maier KE, Marunde MR, Schomburg NK, Vaidya A, Cowles MW, Venters BJ, Kassavetis G, Sun ZW, Kadonaga JT, Armache JP, Keogh MC, Tyler JK

PDB-9zen:
Competition for different elements of the nucleosome acidic patch yields distinct functional outcomes. VHH 1B2
Method: single particle / : Chakraborty U, Saccone EC, Becerra GC, Khan LF, Arslanovic N, Aguilar R, Gloor SL, Hunt SR, Folkwein HJ, Husby NL, Maier KE, Marunde MR, Schomburg NK, Vaidya A, Cowles MW, Venters BJ, Kassavetis G, Sun ZW, Kadonaga JT, Armache JP, Keogh MC, Tyler JK

PDB-9zeo:
Competition for different elements of the nucleosome acidic patch yields distinct functional outcomes. VHH 1G1
Method: single particle / : Chakraborty U, Saccone EC, Becerra GC, Khan LF, Arslanovic N, Aguilar R, Gloor SL, Hunt SR, Folkwein HJ, Husby NL, Maier KE, Marunde MR, Schomburg NK, Vaidya A, Cowles MW, Venters BJ, Kassavetis G, Sun ZW, Kadonaga JT, Armache JP, Keogh MC, Tyler JK

EMDB-46602:
CryoEM structure of anti-MHC-I Fab B1.23.2 complex with HLA-B44:05
Method: single particle / : Jiang J, Natarajan K, Margulies DH, Lei H, Huang R

PDB-9d74:
CryoEM structure of anti-MHC-I Fab B1.23.2 complex with HLA-B44:05
Method: single particle / : Jiang J, Natarajan K, Margulies DH, Lei H, Huang R

EMDB-46601:
CryoEM structure of anti-MHC-I mAb B1.23.2 complex with HLA-B44:05
Method: single particle / : Jiang J, Natarajan K, Lei H, Huang R, Margulies DH

EMDB-70276:
CryoEM structure of anti-MHC-I mAb B1.23.2 Fc domains
Method: single particle / : Jiang J, Natarajan K, Margulies DH, Huang R

PDB-9d73:
CryoEM structure of anti-MHC-I mAb B1.23.2 complex with HLA-B44:05
Method: single particle / : Jiang J, Natarajan K, Lei H, Huang R, Margulies DH

PDB-9oa9:
CryoEM structure of anti-MHC-I mAb B1.23.2 Fc domains
Method: single particle / : Jiang J, Natarajan K, Margulies DH

EMDB-46600:
CryoEM structure of anti-MHC-I Fab M1/42 complex with H2-Dd
Method: single particle / : Jiang J, Natarajan K, Margulies DH, Lei H, Huang R

PDB-9d72:
CryoEM structure of anti-MHC-I Fab M1/42 complex with H2-Dd
Method: single particle / : Jiang J, Natarajan K, Margulies DH, Lei H, Huang R

EMDB-67283:
C1 Symmetry of DNA tesseract
Method: single particle / : Shiu SCC

EMDB-67284:
Octahedral Symmetry of DNA Tesseract
Method: single particle / : Shiu SCC

EMDB-72715:
Cryo-EM structure of conoid fiber from Toxoplasma gondii (24-nm repeat)
Method: single particle / : Zeng J, Zhang R

EMDB-72717:
Cryo-EM structure of intraconoidal microtubule 2 (ICMT2) from Toxoplasma gondii (8-nm repeat)
Method: single particle / : Zeng J, Zhang R

EMDB-72718:
Cryo-EM structure of intraconoidal microtubule 1 (ICMT1) from Toxoplasma gondii (8-nm repeat)
Method: single particle / : Zeng J, Zhang R

EMDB-72719:
Cryo-EM structure of the apical region of subpellicular microtubule (SPMT) from Toxoplasma gondii (8-nm repeat)
Method: single particle / : Zeng J, Zhang R

EMDB-72716:
Cryo-EM structure of pre-conoid ring 2 (PCR P2 ring)from Toxoplasma gondii
Method: single particle / : Zeng J, Zhang R

EMDB-62800:
Cryo-EM structure of SARS-CoV-2 S-BQ.1 in complex with Ace2 constituent map 1
Method: single particle / : Hsu HF, Wu MH, Chang YC, Hsu STD

EMDB-62810:
Cryo-EM structure of SARS-CoV-2 S-BQ.1 in complex with ACE2 constituent map 2
Method: single particle / : Hsu HF, Wu MH, Chang YC, Hsu STD

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

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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.
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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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