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Showing 1 - 50 of 12,610 items for (author: ma & ss)

EMDB-75395:
Cryo-EM structure of Rad1-Rad10
Method: single particle / : Rodriguez Gonzalez J, Guarne A

EMDB-75396:
Cryo-EM structure of the Rad1-Rad10-Saw1 complex
Method: single particle / : Rodriguez Gonzalez J, Guarne A

PDB-10qx:
Cryo-EM structure of Rad1-Rad10
Method: single particle / : Rodriguez Gonzalez J, Guarne A

PDB-10qy:
Cryo-EM structure of the Rad1-Rad10-Saw1 complex
Method: single particle / : Rodriguez Gonzalez J, Guarne A

EMDB-72398:
Cryo EM Structure of Full Length mGluR8 in Complex with Beta-Arrestin-1 Bound to Agonist L-AP4 and PAM VU6005649
Method: single particle / : Marx DC, Levitz JT

EMDB-72399:
Cryo EM Structure of Full lengthmGluR8 Bound to Agonist L-AP4 and PAM VU6005649 in complex with G proteins
Method: single particle / : Marx DC, Levitz JT

PDB-9y1m:
Cryo EM Structure of Full Length mGluR8 in Complex with Beta-Arrestin-1 Bound to Agonist L-AP4 and PAM VU6005649
Method: single particle / : Marx DC, Levitz JT

PDB-9y1n:
Cryo EM Structure of Full lengthmGluR8 Bound to Agonist L-AP4 and PAM VU6005649 in complex with G proteins
Method: single particle / : Marx DC, Levitz JT

PDB-32fd:
Cryo-EM structure of cariprazine-bound D3 dopamine receptor with mini-Go (alternative conformation)
Method: single particle / : Yardeni EH, Kiss DJ, Keseru GM, Shalev-Benami M

EMDB-55084:
Native N.meningitidis PorB bound to the N-terminal domain of rmpM
Method: single particle / : Fernandez-Martinez D, Dumenil G

EMDB-58651:
Human wild-type LONP1 bound to PZL-26
Method: single particle / : Pardo-Hernandez C, Green J, Gustafsson CM

EMDB-55042:
Map of the SPATA5-SPATA5L1-CINP-C1ORF109 complex
Method: single particle / : Weisser M, Masternak M, Montoya G

EMDB-56034:
30S pre-initiation complex with IF2 and IF1 bound (30S PIC-A)
Method: single particle / : Guerra GS, Demo G

EMDB-56035:
30S pre-initiation complex with IF2 bound (30S PIC-B)
Method: single particle / : Guerra GS, Demo G

EMDB-56036:
70S Initiation Complex with extended IF2 bound (70S IC-I)
Method: single particle / : Guerra GS, Demo G

EMDB-56037:
E. coli 70S initiation complex bound to compact IF2-GDP (70S IC-II)
Method: single particle / : Guerra GS, Demo G

EMDB-56038:
E. coli 70S elongation competent complex (70S EC)
Method: single particle / : Guerra GS, Demo G

EMDB-74431:
Escherichia coli 70S ribosome initiation complex bound to IF1 and extended IF2-GDPCP (70S IC*)
Method: single particle / : Basu RS, Valdez NA, Guerra GS, Demo G, Gagnon MG

EMDB-78690:
Non-uniform refinement consensus map of mGluR8 bound to agonist, PAM, and G protein heterotrimer
Method: single particle / : Marx DC, Levitz JT

EMDB-78692:
Local refinement of LBD of mGluR8 bound to agonist, PAM, and G proteins
Method: single particle / : Marx DC, Levitz JT

EMDB-78693:
Local refinement of agonist-bound mGluR8 CRD and TMD in complex to G protein heterotrimer
Method: single particle / : Marx DC, Levitz JT

EMDB-78695:
Local Refinement of mGluR8 TMD and G protein heterotrimer in complex
Method: single particle / : Marx DC, Levitz JT

EMDB-78696:
Local Refinement of G protein heterotrimer bound to scFv14 when in complex with active mGluR8
Method: single particle / : Marx DC, Levitz JT

EMDB-78722:
Local Refinement of mGluR8 LBD when in complex with beta-arrestin-1
Method: single particle / : Marx DC, Levitz JT

EMDB-78723:
Local refinement of agonist/PAM bound mGluR8 chain A LBD and CRD when in complex with beta-arrestin-1
Method: single particle / : Marx DC, Levitz JT

EMDB-78724:
Consensus non-uniform refinement map of agonist/PAM bound mGluR8 in complex with beta-arrestin-1
Method: single particle / : Marx DC, Levitz JT

EMDB-78725:
Local Refinement of agonist/PAM bound mGluR8 chain B CRD and TMD when in complex with beta-arrestin-1
Method: single particle / : Marx DC, Levitz JT

EMDB-71076:
Human liver phosphofructokinase-1 bound to XJ-4-85
Method: single particle / : Lynch EM, Jiang X, Hsu KL, Kollman JM

PDB-9p0j:
Human liver phosphofructokinase-1 bound to XJ-4-85
Method: single particle / : Lynch EM, Jiang X, Hsu KL, Kollman JM

EMDB-55684:
Cryo-EM structure of cariprazine-bound D3 dopamine receptor with mini-Go
Method: single particle / : Yardeni EH, Kiss DJ, Keseru GM, Shalev-Benami M

PDB-9t8c:
Cryo-EM structure of cariprazine-bound D3 dopamine receptor with mini-Go
Method: single particle / : Yardeni EH, Kiss DJ, Keseru GM, Shalev-Benami M

EMDB-77314:
Structure of PCDH1-EC1 in complex with ANDV-VLPs
Method: single particle / : Guo L, McLellan JS

EMDB-55481:
cryo-em structure of tri-hexameric hLRRC8A double mutation
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

EMDB-55482:
Cryo-EM structure of homo-hexameric hLRRC8A double mutation W168L/L402W
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

EMDB-55483:
Cryo-EM structure of nomo-hexameric hLRRC8A L402W with ATP
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

EMDB-55484:
Cryo-EM structure of homo-hexameric hLRRC8A L402W
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

EMDB-57359:
Cryo-EM structure of homo-hexameric hLRRC8A double mutation I2C/L402W
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

PDB-29tc:
Cryo-EM structure of homo-hexameric hLRRC8A double mutation I2C/L402W
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

PDB-9t33:
Cryo-EM structure of homo-hexameric hLRRC8A double mutation W168L/L402W
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

PDB-9t34:
Cryo-EM structure of nomo-hexameric hLRRC8A L402W with ATP
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

PDB-9t35:
Cryo-EM structure of homo-hexameric hLRRC8A L402W
Method: single particle / : Bertelli S, Wang L, Klussendorf M, Pusch M, Dutzler R, Stauber T

EMDB-49153:
Cryo EM Structure of Full Length mGluR8 Bound to Agonist L-AP4 and PAM VU6005649
Method: single particle / : Marx DC, Levitz JT

EMDB-49154:
Cryo EM Structure of Full Length mGluR8 Bound to Agonist L-AP4 and PAM VU6005649, class 2
Method: single particle / : Marx DC, Levitz JT

PDB-9n8y:
Cryo EM Structure of Full Length mGluR8 Bound to Agonist L-AP4 and PAM VU6005649
Method: single particle / : Marx DC, Levitz JT

PDB-9n8z:
Cryo EM Structure of Full Length mGluR8 Bound to Agonist L-AP4 and PAM VU6005649, class 2
Method: single particle / : Marx DC, Levitz JT

EMDB-75912:
Focused subtomogram average of the transition zone doublet microtubule (c) in human airway cilia
Method: subtomogram averaging / : Zhou H, Brown A

EMDB-75913:
Focused subtomogram average of the transition zone doublet microtubule (b) in human airway cilia
Method: subtomogram averaging / : Zhou H, Brown A

EMDB-75914:
Focused subtomogram average of the transition zone linker (linker1) in human airway cilia
Method: subtomogram averaging / : Zhou H, Brown A

EMDB-75915:
Focused subtomogram average of the transition zone linker (linker4) in human airway cilia
Method: subtomogram averaging / : Zhou H, Brown A

EMDB-75916:
Focused subtomogram average of the transition zone doublet microtubule (e) in human airway cilia
Method: subtomogram averaging / : Zhou H, Brown A

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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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Related info.:Covid-19 info / Mar 5, 2020. Novel coronavirus structure data

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