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Showing 1 - 50 of 65 items for (author: sader & k)

PDB-8swf:
Cryo-EM structure of NLRP3 open octamer
Method: single particle / : Yu X, Matico RE, Miller R, Schoubroeck BV, Grauwen K, Suarez J, Pietrak B, Haloi N, Yin Y, Tresadern GJ, Perez-Benito L, Lindahl E, Bottelbergs A, Oehlrich D, Opdenbosch NV, Sharma S

PDB-8swk:
Cryo-EM structure of NLRP3 closed hexamer
Method: single particle / : Yu X, Matico RE, Miller R, Schoubroeck BV, Grauwen K, Suarez J, Pietrak B, Haloi N, Yin Y, Tresadern GJ, Perez-Benito L, Lindahl E, Bottelbergs A, Oehlrich D, Opdenbosch NV, Sharma S

PDB-8sxn:
Structure of NLRP3 and NEK7 complex
Method: single particle / : Yu X, Matico RE, Miller R, Schoubroeck BV, Grauwen K, Suarez J, Pietrak B, Haloi N, Yin Y, Tresadern GJ, Perez-Benito L, Lindahl E, Bottelbergs A, Oehlrich D, Opdenbosch NV, Sharma S

EMDB-27936:
Cryo-EM structure of Apo form ME3
Method: single particle / : Yu X, Grell TAJ, Shaffer PL, Steele R, Sharma S, Thompson AA, Tresadern G, Ortiz-Meoz RF, Mason M, Gomez-Tamayo JC, Riley D, Wagner MV, Wadia J

EMDB-27937:
Cryo-EM structure of human ME3 in the presence of citrate
Method: single particle / : Yu X, Grell TAJ, Shaffer PL, Steele R, Sharma S, Thompson AA, Tresadern G, Ortiz-Meoz RF, Mason M, Gomez-Tamayo JC, Riley D, Wagner MV, Wadia J

EMDB-27945:
Cryo-EM structure of human ME3 in the presence of citrate
Method: single particle / : Yu X, Grell TAJ, Shaffer PL, Steele R, Sharma S, Thompson AA, Tresadern G, Ortiz-Meoz RF, Mason M, Gomez-Tamayo JC, Riley D, Wagner MV, Wadia J

PDB-8e76:
Cryo-EM structure of Apo form ME3
Method: single particle / : Yu X, Grell TAJ, Shaffer PL, Steele R, Sharma S, Thompson AA, Tresadern G, Ortiz-Meoz RF, Mason M, Gomez-Tamayo JC, Riley D, Wagner MV, Wadia J

PDB-8e78:
Cryo-EM structure of human ME3 in the presence of citrate
Method: single particle / : Yu X, Grell TAJ, Shaffer PL, Steele R, Sharma S, Thompson AA, Tresadern G, Ortiz-Meoz RF, Mason M, Gomez-Tamayo JC, Riley D, Wagner MV, Wadia J

PDB-8e8o:
Cryo-EM structure of human ME3 in the presence of citrate
Method: single particle / : Yu X, Grell TAJ, Shaffer PL, Steele R, Sharma S, Thompson AA, Tresadern G, Ortiz-Meoz RF, Mason M, Gomez-Tamayo JC, Riley D, Wagner MV, Wadia J

EMDB-32588:
The Cryo-EM structure of siphonaxanthin chlorophyll a/b type light-harvesting complex II
Method: single particle / : Seki S, Nakaniwa T, Castro-Hartmann P, Sader K, Kawamoto A, Tanaka H, Qian P, Kurisu G, Fujii R

PDB-7wlm:
The Cryo-EM structure of siphonaxanthin chlorophyll a/b type light-harvesting complex II
Method: single particle / : Seki S, Nakaniwa T, Castro-Hartmann P, Sader K, Kawamoto A, Tanaka H, Qian P, Kurisu G, Fujii R

EMDB-14633:
PucA-LH2 complex from Rps. palustris
Method: single particle / : Qian P, Cogdell RJ

PDB-7zcu:
PucA-LH2 complex from Rps. palustris
Method: single particle / : Qian P, Cogdell RJ

EMDB-14650:
PucB-LH2 complex from Rps. palustris
Method: single particle / : Qian P, Cogdell RJ, Nguyen-Phan TC

EMDB-14682:
PucD-LH2 complex from Rps. palustris
Method: single particle / : Qian P, Cogdell RJ, Nguyen-Phan TC

EMDB-14685:
PucE-LH2 complex from Rps. palustris
Method: single particle / : Qian P, Cogdell RJ, Nguyen-Phan TC

PDB-7zdi:
PucB-LH2 complex from Rps. palustris
Method: single particle / : Qian P, Cogdell RJ, Nguyen-Phan TC

PDB-7ze3:
PucD-LH2 complex from Rps. palustris
Method: single particle / : Qian P, Cogdell RJ, Nguyen-Phan TC

PDB-7ze8:
PucE-LH2 complex from Rps. palustris
Method: single particle / : Qian P, Cogdell RJ, Nguyen-Phan TC

EMDB-13416:
Human voltage-gated potassium channel Kv3.1 (apo condition)
Method: single particle / : Chi G, Venkaya S, Singh NK, McKinley G, Mukhopadhyay SMM, Marsden B, MacLean EM, Fernandez-Cid A, Pike ACW, Savva C, Ragan TJ, Burgess-Brown NA, Duerr KL

EMDB-13417:
Human voltage-gated potassium channel Kv3.1 (with Zn)
Method: single particle / : Chi G, Qian P, Castro-Hartmann P, Venkaya S, Singh NK, McKinley G, Mukhopadhyay SMM, Fernandez-Cid A, Marsden B, MacLean EM, Pike ACW, Sader K, Burgess-Brown NA, Duerr KL

EMDB-13418:
Human voltage-gated potassium channel Kv3.1 in dimeric state (with Zn)
Method: single particle / : Chi G, Qian P, Castro-Hartmann P, Venkaya S, Singh NK, McKinley G, Mukhopadhyay SMM, Marsden B, MacLean EM, Fernandez-Cid A, Pike ACW, Sader K, Burgess-Brown NA, Duerr KL

EMDB-13419:
Human voltage-gated potassium channel Kv3.1 (with EDTA)
Method: single particle / : Chi G, Qian P, Castro-Hartmann P, Venkaya S, Singh NK, McKinley G, Mukhopadhyay SMM, Fernandez-Cid A, Pike ACW, Marsden B, MacLean EM, Sader K, Burgess-Brown NA, Duerr KL

PDB-7phh:
Human voltage-gated potassium channel Kv3.1 (apo condition)
Method: single particle / : Chi G, Venkaya S, Singh NK, McKinley G, Mukhopadhyay SMM, Marsden B, MacLean EM, Fernandez-Cid A, Pike ACW, Savva C, Ragan TJ, Burgess-Brown NA, Duerr KL

PDB-7phi:
Human voltage-gated potassium channel Kv3.1 (with Zn)
Method: single particle / : Chi G, Qian P, Castro-Hartmann P, Venkaya S, Singh NK, McKinley G, Mukhopadhyay SMM, Fernandez-Cid A, Marsden B, MacLean EM, Pike ACW, Sader K, Burgess-Brown NA, Duerr KL

PDB-7phk:
Human voltage-gated potassium channel Kv3.1 in dimeric state (with Zn)
Method: single particle / : Chi G, Qian P, Castro-Hartmann P, Venkaya S, Singh NK, McKinley G, Mukhopadhyay SMM, Marsden B, MacLean EM, Fernandez-Cid A, Pike ACW, Sader K, Burgess-Brown NA, Duerr KL

PDB-7phl:
Human voltage-gated potassium channel Kv3.1 (with EDTA)
Method: single particle / : Chi G, Qian P, Castro-Hartmann P, Venkaya S, Singh NK, McKinley G, Mukhopadhyay SMM, Fernandez-Cid A, Pike ACW, Marsden B, MacLean EM, Sader K, Burgess-Brown NA, Duerr KL

EMDB-12679:
Cryo-EM structure (model_1a) of the RC-dLH complex from Gemmatimonas phototrophica at 2.4 A
Method: single particle / : Qian P, Koblizek M

EMDB-12680:
Cryo-EM structure (model_2a) of the RC-dLH complex from Gemmatimonas phototrophica at 2.5 A
Method: single particle / : Qian P, Koblizek M

EMDB-12681:
Cryo-EM structure of the RC-dLH complex (model_1b) from Gemmatimonas phototrophica at 2.47 A
Method: single particle / : Qian P, Koblizek M

EMDB-12682:
Cryo-EM structure (model_2b) of the RC-dLH complex from Gemmatimonas phototrophica at 2.44 A
Method: single particle / : Qian P, Koblizek M

PDB-7o0u:
Cryo-EM structure (model_1a) of the RC-dLH complex from Gemmatimonas phototrophica at 2.4 A
Method: single particle / : Qian P, Koblizek M

PDB-7o0v:
Cryo-EM structure (model_2a) of the RC-dLH complex from Gemmatimonas phototrophica at 2.5 A
Method: single particle / : Qian P, Koblizek M

PDB-7o0w:
Cryo-EM structure of the RC-dLH complex (model_1b) from Gemmatimonas phototrophica at 2.47 A
Method: single particle / : Qian P, Koblizek M

PDB-7o0x:
Cryo-EM structure (model_2b) of the RC-dLH complex from Gemmatimonas phototrophica at 2.44 A
Method: single particle / : Qian P, Koblizek M

EMDB-13307:
Cryo-EM structure of light harvesting complex 2 from Rba. sphaeroides.
Method: single particle / : Qian P, Swainsbury DJK, Croll TI, Castro-Hartmann P, Sader K, Divitini G, Hunter CN

PDB-7pbw:
Cryo-EM structure of light harvesting complex 2 from Rba. sphaeroides.
Method: single particle / : Qian P, Swainsbury DJK, Croll TI, Castro-Hartmann P, Sader K, Divitini G, Hunter CN

EMDB-13590:
Cryo-EM structure of the dimeric Rhodobacter sphaeroides RC-LH1 core complex at 2.9 A: the structural basis for dimerisation
Method: single particle / : Qian P, Hunter CN

PDB-7pqd:
Cryo-EM structure of the dimeric Rhodobacter sphaeroides RC-LH1 core complex at 2.9 A: the structural basis for dimerisation
Method: single particle / : Qian P, Hunter CN

EMDB-13441:
Cryo-EM structure of the Rhodobacter sphaeroides RC-LH1-PufXY monomer complex at 2.5 A
Method: single particle / : Qian P, Hunter CN

PDB-7pil:
Cryo-EM structure of the Rhodobacter sphaeroides RC-LH1-PufXY monomer complex at 2.5 A
Method: single particle / : Qian P, Hunter CN

EMDB-13110:
Cryo-EM structure of the Rhodospirillum rubrum RC-LH1 complex
Method: single particle / : Qian P, Croll TI, Castro HP, Moriarty NW, sader K, Hunter CN

PDB-7oy8:
Cryo-EM structure of the Rhodospirillum rubrum RC-LH1 complex
Method: single particle / : Qian P, Croll TI, Castro HP, Moriarty NW, sader K, Hunter CN

EMDB-10810:
In-situ structure of the trimeric HEF from influenza C viral particles with a matrix layer by cryo-ET
Method: subtomogram averaging / : Halldorsson S, Rosenthal PB

EMDB-10811:
In-situ structure of a dimer of the trimeric HEF from influenza C viral particles containing a matrix layer by cryo-ET
Method: subtomogram averaging / : Halldorsson S, Rosenthal PB

EMDB-10812:
In-situ structure of the trimeric HEF from influenza C viral particles without a matrix layer by cryo-ET
Method: subtomogram averaging / : Halldorsson S, Rosenthal PB

EMDB-10813:
In-situ structure of a dimer of the trimeric HEF from influenza C viral particles without a matrix layer by cryo-ET
Method: subtomogram averaging / : Halldorsson S, Rosenthal PB

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New format data for meta-information of EMDB entries

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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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