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Showing 1 - 50 of 7,396 items for (author: du & d)

EMDB-64797:
Cryo-EM structure of free-state VbAgo
Method: single particle / : Wu S

EMDB-64798:
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA
Method: single particle / : Wu S

EMDB-64822:
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA
Method: single particle / : Shan W

EMDB-64826:
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA in target-released state
Method: single particle / : Wu S

EMDB-64832:
Structure of the Argonaute protein from Verrucomicrobiota bacterium in complex with guide DNA and target RNA in dimeric state.
Method: single particle / : Wu S

EMDB-64859:
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA in monomeric state.
Method: single particle / : Wu S

EMDB-64871:
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA in monomeric state.
Method: single particle / : Wu S

EMDB-64873:
The transition-state structure of the Argonaute protein from a Verrucomicrobia bacterium in complex with guide DNA and target RNA.
Method: single particle / : Wu S

PDB-9v65:
Cryo-EM structure of free-state VbAgo
Method: single particle / : Wu S

PDB-9v66:
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA
Method: single particle / : Wu S

PDB-9v7s:
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA
Method: single particle / : Shan W

PDB-9v7z:
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA in target-released state
Method: single particle / : Wu S

PDB-9v8a:
Structure of the Argonaute protein from Verrucomicrobiota bacterium in complex with guide DNA and target RNA in dimeric state.
Method: single particle / : Wu S

PDB-9v93:
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA in monomeric state.
Method: single particle / : Wu S

PDB-9v9g:
Structure of the Argonaute protein from Verrucomicrobia bacterium in complex with guide DNA and target RNA in monomeric state.
Method: single particle / : Wu S

PDB-9v9i:
The transition-state structure of the Argonaute protein from a Verrucomicrobia bacterium in complex with guide DNA and target RNA.
Method: single particle / : Wu S

EMDB-61961:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 0U scaffold at 2.96 Angstrom
Method: single particle / : Xie G, Du X, Du J

EMDB-61962:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 1U sacffold at 3.5 Angstrom
Method: single particle / : Xie G, Du X, Du J

EMDB-61963:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 2U sacffold at 3.04 Angstrom
Method: single particle / : Xie G, Du X, Du J

EMDB-61964:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 3U sacffold at 3.8 Angstrom
Method: single particle / : Xie G, Du X, Du J

EMDB-61965:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 4U sacffold at 3.32 Angstrom
Method: single particle / : Xie G, Du X, Du J

EMDB-61966:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 5U sacffold at 3.19 Angstrom
Method: single particle / : Xie G, Du X, Du J

EMDB-61967:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 6U sacffold at 3.04 Angstrom
Method: single particle / : Xie G, Du X, Du J

EMDB-61968:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 7U sacffold at 3.42 Angstrom
Method: single particle / : Xie G, Du X, Du J

EMDB-61969:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 8U sacffold at 4.06 Angstrom
Method: single particle / : Xie G, Du X, Du J

PDB-9k11:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 0U scaffold at 2.96 Angstrom
Method: single particle / : Xie G, Du X, Du J

PDB-9k12:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 1U sacffold at 3.5 Angstrom
Method: single particle / : Xie G, Du X, Du J

PDB-9k13:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 2U sacffold at 3.04 Angstrom
Method: single particle / : Xie G, Du X, Du J

PDB-9k14:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 3U sacffold at 3.8 Angstrom
Method: single particle / : Xie G, Du X, Du J

PDB-9k15:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 4U sacffold at 3.32 Angstrom
Method: single particle / : Xie G, Du X, Du J

PDB-9k16:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 5U sacffold at 3.19 Angstrom
Method: single particle / : Xie G, Du X, Du J

PDB-9k17:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 6U sacffold at 3.04 Angstrom
Method: single particle / : Xie G, Du X, Du J

PDB-9k18:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 7U sacffold at 3.42 Angstrom
Method: single particle / : Xie G, Du X, Du J

PDB-9k19:
A cryo-EM structure of B. oleracea RNA polymerase V in complex with 8U sacffold at 4.06 Angstrom
Method: single particle / : Xie G, Du X, Du J

EMDB-62738:
Structure of human apo Taurine Transporter in the inward-open conformation
Method: single particle / : Wu JX, Qi Y

EMDB-62739:
Structure of human apo Taurine Transporter in the inward-occluded conformation
Method: single particle / : Wu JX, Qi Y

EMDB-62740:
Structure of taurine-bound human Taurine Transporter in the inward-occluded conformation
Method: single particle / : Wu JX, Qi Y

EMDB-62741:
Structure of beta-alanine-bound human Taurine Transporter in the inward-occluded conformation
Method: single particle / : Wu JX, Qi Y

EMDB-62742:
Structure of piperidine-4-sulfonic acid-bound human Taurine Transporter in the inward-open conformation
Method: single particle / : Wu JX, Qi Y

EMDB-62743:
Structure of piperidine-4-sulfonic acid-bound human Taurine Transporter in the inward-occluded conformation
Method: single particle / : Wu JX, Qi Y

PDB-9l19:
Structure of human apo Taurine Transporter in the inward-open conformation
Method: single particle / : Wu JX, Qi Y

PDB-9l1a:
Structure of human apo Taurine Transporter in the inward-occluded conformation
Method: single particle / : Wu JX, Qi Y

PDB-9l1b:
Structure of taurine-bound human Taurine Transporter in the inward-occluded conformation
Method: single particle / : Wu JX, Qi Y

PDB-9l1c:
Structure of beta-alanine-bound human Taurine Transporter in the inward-occluded conformation
Method: single particle / : Wu JX, Qi Y

PDB-9l1d:
Structure of piperidine-4-sulfonic acid-bound human Taurine Transporter in the inward-open conformation
Method: single particle / : Wu JX, Qi Y

PDB-9l1e:
Structure of piperidine-4-sulfonic acid-bound human Taurine Transporter in the inward-occluded conformation
Method: single particle / : Wu JX, Qi Y

EMDB-73991:
Cryo-EM structure of human apo mTORC2
Method: single particle / : Wranik M, Lee JM, Rogala KB

EMDB-73992:
mTORC2 in complex with Akt1
Method: single particle / : Wranik M, Lee JM, Rogala KB

PDB-9zbj:
Cryo-EM structure of human apo mTORC2
Method: single particle / : Wranik M, Lee JM, Rogala KB

PDB-9zbk:
mTORC2 in complex with Akt1
Method: single particle / : Wranik M, Lee JM, Rogala KB

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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.

Related info.:EMDB header

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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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