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Showing all 33 items for (author: manolaridis & i)

EMDB-17537:
Structure of 5D3-Fab and nanobody(Nb8)-bound ABCG2
Method: single particle / : Irobalieva RN, Manolaridis I, Jackson SM, Ni D, Pardon E, Stahlberg H, Steyaert J, Locher KP

EMDB-17543:
Structure of 5D3-Fab and nanobody(Nb17)-bound ABCG2
Method: single particle / : Irobalieva RN, Manolaridis I, Jackson SM, Ni D, Pardon E, Stahlberg H, Steyaert J, Locher KP

EMDB-17547:
Structure of 5D3-Fab and nanobody(Nb96)-bound ABCG2
Method: single particle / : Irobalieva RN, Manolaridis I, Jackson SM, Ni D, Pardon E, Stahlberg H, Steyaert J, Locher KP

PDB-8p7w:
Structure of 5D3-Fab and nanobody(Nb8)-bound ABCG2
Method: single particle / : Irobalieva RN, Manolaridis I, Jackson SM, Ni D, Pardon E, Stahlberg H, Steyaert J, Locher KP

PDB-8p8a:
Structure of 5D3-Fab and nanobody(Nb17)-bound ABCG2
Method: single particle / : Irobalieva RN, Manolaridis I, Jackson SM, Ni D, Pardon E, Stahlberg H, Steyaert J, Locher KP

PDB-8p8j:
Structure of 5D3-Fab and nanobody(Nb96)-bound ABCG2
Method: single particle / : Irobalieva RN, Manolaridis I, Jackson SM, Ni D, Pardon E, Stahlberg H, Steyaert J, Locher KP

EMDB-12939:
ABCG2 E1S turnover-2 state
Method: single particle / : Ni D, Yu Q, Kowal J, Manolaridis I, Jackson SM, Stahlberg H, Locher KP

EMDB-12951:
ABCG2 topotecan turnover-1 state
Method: single particle / : Yu Q, Ni D, Kowal J, Manolaridis I, Jackson SM, Stahlberg H, Locher KP

EMDB-12952:
ABCG2 topotecan turnover-2 state
Method: single particle / : Yu Q, Ni D, Kowal J, Manolaridis I, Jackson SM, Stahlberg H, Locher KP

PDB-7oj8:
ABCG2 E1S turnover-2 state
Method: single particle / : Ni D, Yu Q, Kowal J, Manolaridis I, Jackson SM, Stahlberg H, Locher KP

PDB-7ojh:
ABCG2 topotecan turnover-1 state
Method: single particle / : Yu Q, Ni D, Kowal J, Manolaridis I, Jackson SM, Stahlberg H, Locher KP

PDB-7oji:
ABCG2 topotecan turnover-2 state
Method: single particle / : Yu Q, Ni D, Kowal J, Manolaridis I, Jackson SM, Stahlberg H, Locher KP

EMDB-12290:
Structure of tariquidar-bound ABCG2
Method: single particle / : Kowal J, Locher K

EMDB-12295:
Structure of topotecan-bound ABCG2
Method: single particle / : Kowal J, Locher K, Ni D, Stahlberg H

EMDB-12300:
Structure of mitoxantrone-bound ABCG2
Method: single particle / : Kowal J, Locher K, Ni D, Stahlberg H

PDB-7neq:
Structure of tariquidar-bound ABCG2
Method: single particle / : Kowal J, Locher K

PDB-7nez:
Structure of topotecan-bound ABCG2
Method: single particle / : Kowal J, Locher K, Ni D, Stahlberg H

PDB-7nfd:
Structure of mitoxantrone-bound ABCG2
Method: single particle / : Kowal J, Locher K, Ni D, Stahlberg H

PDB-6hzm:
Cryo-EM structure of the ABCG2 E211Q mutant bound to ATP and Magnesium (alternative placement of Magnesium into the cryo-EM density)
Method: single particle / : Manolaridis I, Jackson SM, Taylor NMI, Kowal J, Stahlberg H, Locher KP

EMDB-0190:
Cryo-EM structure of the ABCG2 E211Q mutant bound to ATP and Magnesium
Method: single particle / : Manolaridis I, Jackson SM, Taylor NMI, Kowal J, Stahlberg H, Locher KP

EMDB-0196:
Cryo-EM structure of the ABCG2 E211Q mutant bound to estrone 3-sulfate and 5D3-Fab
Method: single particle / : Manolaridis I, Jackson SM, Taylor NMI, Kowal J, Stahlberg H, Locher KP

PDB-6hbu:
Cryo-EM structure of the ABCG2 E211Q mutant bound to ATP and Magnesium
Method: single particle / : Manolaridis I, Jackson SM, Taylor NMI, Kowal J, Stahlberg H, Locher KP

PDB-6hco:
Cryo-EM structure of the ABCG2 E211Q mutant bound to estrone 3-sulfate and 5D3-Fab
Method: single particle / : Manolaridis I, Jackson SM, Taylor NMI, Kowal J, Stahlberg H, Locher KP

PDB-6hij:
Cryo-EM structure of the human ABCG2-MZ29-Fab complex with cholesterol and PE lipids docked
Method: single particle / : Jackson SM, Manolaridis I, Kowal J, Zechner M, Taylor NMI, Bause M, Bauer S, Bartholomaeus R, Stahlberg H, Bernhardt G, Koenig B, Buschauer A, Altmann KH, Locher KP

EMDB-3953:
Structure of inhibitor-bound ABCG2
Method: single particle / : Jackson SM, Manolaridis I, Kowal J, Zechner M, Altmann KH, Locher KP

EMDB-4246:
Structure of inhibitor-bound ABCG2
Method: single particle / : Jackson SM, Manolaridis I, Kowal J, Zechner M, Altmann KH, Locher KP

EMDB-4256:
Structure of an inhibitor-bound ABC transporter
Method: single particle / : Jackson SM, Manolaridis I, Kowal J, Zechner M, Taylor NMI, Bause M, Bauer S, Bartholomaeus R, Stahlberg H, Bernhardt G, Koenig B, Buschauer A, Altmann KH, Locher KP

PDB-6eti:
Structure of inhibitor-bound ABCG2
Method: single particle / : Jackson SM, Manolaridis I, Kowal J, Zechner M, Altmann KH, Locher KP

PDB-6feq:
Structure of inhibitor-bound ABCG2
Method: single particle / : Jackson SM, Manolaridis I, Kowal J, Zechner M, Altmann KH, Locher KP

PDB-6ffc:
Structure of an inhibitor-bound ABC transporter
Method: single particle / : Jackson SM, Manolaridis I, Kowal J, Zechner M, Taylor NMI, Bause M, Bauer S, Bartholomaeus R, Stahlberg H, Bernhardt G, Koenig B, Buschauer A, Altmann KH, Locher KP

EMDB-3654:
Structure of an ABC transporter
Method: single particle / : Taylor NMI, Manolaridis I, Jackson SM, Kowal J, Stahlberg H, Locher KP

PDB-5nj3:
Structure of an ABC transporter: complete structure
Method: single particle / : Taylor NMI, Manolaridis I, Jackson SM, Kowal J, Stahlberg H, Locher KP

PDB-5njg:
Structure of an ABC transporter: part of the structure that could be built de novo
Method: single particle / : Taylor NMI, Manolaridis I, Jackson SM, Kowal J, Stahlberg H, Locher KP

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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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