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Showing 1 - 50 of 175 items for (author: chang & cc)

EMDB-49373:
CryoEM Structure of De Novo Antibody Fragment scFv 6 with C. difficile Toxin B (TcdB)
Method: single particle / : Weidle C, Borst AJ

EMDB-49405:
CryoEM Structure of De Novo VHH, VHH_flu_01, bound to influenza HA, strain A/USA:Iowa/1943 H1N1
Method: single particle / : Borst AJ, Weidle C

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-38042:
Cryo-EM structure of Ryanodine receptor 1 (EGTA)
Method: single particle / : Chen Q, Hu H

EMDB-38043:
Cryo-EM structure of Ryanodine receptor 1 (100 nM Ca2+)
Method: single particle / : Chen Q, Hu H

EMDB-38044:
Cryo-EM structure of Ryanodine receptor 1 (TM helix S0,100 nM Ca2+, closed state)
Method: single particle / : Chen Q, Hu H

EMDB-38045:
Cryo-EM structure of Ryanodine receptor 1 (TM helix S0,100 nM Ca2+, open state)
Method: single particle / : Chen Q, Hu H

EMDB-38046:
Cryo-EM structure of Ryanodine receptor 1 (20 uM Ca2+, 2 mM ATP)
Method: single particle / : Chen Q, Hu H

EMDB-38047:
Cryo-EM structure of Ryanodine receptor 1 (TM helix S0,20 uM Ca2+, 2 mM ATP)
Method: single particle / : Chen Q, Hu H

EMDB-38048:
Cryo-EM structure of Ryanodine receptor 1 (TM helix S0, 5 mM Ca2+)
Method: single particle / : Chen Q, Hu H

EMDB-38201:
Cryo-EM structure of SARS-CoV-2 S-BQ.1 in complex with ACE2
Method: single particle / : Hsu HF, Wu MH, Chang YC, Hsu STD

EMDB-61387:
Structure of chanoclavine synthase from Claviceps fusiformis
Method: single particle / : Liu ZW, Wang T, Li X, Shen PP, Huang JW, Chen CC, Guo RT

EMDB-61388:
Structure of chanoclavine synthase from Claviceps fusiformis in complex with prechanoclavine
Method: single particle / : Liu ZW, Wang T, Li X, Shen PP, Huang JW, Chen CC, Guo RT

EMDB-38178:
HURP (428-534)-alpha-tubulin-beta-tubulin complex
Method: single particle / : Chen PP, Hsia KC

EMDB-38179:
Focus refinement of HURP-alpha-beta-tubulin
Method: single particle / : Chen PP, Hsia KC

EMDB-38180:
Focus refinement HURP-alpha-beta tubulin
Method: single particle / : Chen PP, Hsia KC

EMDB-38181:
HURP (428-534)-alpha-tubulin-beta-tubulin complex
Method: single particle / : Chen PP, Hsia KC

EMDB-50621:
Structure of heteromeric amyloid filament of TDP-43 and AXNA11 from FTLD-TDP Type C (variant 2)
Method: helical / : Arseni D, Ryskeldi-Falcon B

EMDB-50628:
Structure of heteromeric amyloid filament of TDP-43 and AXNA11 from FTLD-TDP Type C (variant 1)
Method: helical / : Arseni D, Ryskeldi-Falcon B

PDB-9fof:
Structure of heteromeric amyloid filament of TDP-43 and AXNA11 from FTLD-TDP Type C (variant 2)
Method: helical / : Arseni D, Ryskeldi-Falcon B

PDB-9for:
Structure of heteromeric amyloid filament of TDP-43 and AXNA11 from FTLD-TDP Type C (variant 1)
Method: helical / : Arseni D, Ryskeldi-Falcon B

EMDB-43011:
Phosphorylated, ATP-bound, E1371Q human cystic fibrosis transmembrane conductance regulator (E1371Q-CFTR)
Method: single particle / : Gao X, Hwang T

EMDB-43014:
Phosphorylated, ATP-bound, inhibitor 172-bound E1371Q human cystic fibrosis transmembrane conductance regulator
Method: single particle / : Gao X, Hwang T

PDB-8v7z:
Phosphorylated, ATP-bound, E1371Q human cystic fibrosis transmembrane conductance regulator (E1371Q-CFTR)
Method: single particle / : Gao X, Hwang T

PDB-8v81:
Phosphorylated, ATP-bound, inhibitor 172-bound E1371Q human cystic fibrosis transmembrane conductance regulator
Method: single particle / : Gao X, Hwang T

EMDB-38216:
Cryo-EM structure of SARS-CoV-2 S-BQ.1 in complex with antibody O5C2
Method: single particle / : Hsu HF, Wu MH, Chang YC, Hsu STD

EMDB-36800:
Potassium transporter KtrAB from Bacillus subtilis in ADP-bound state
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD

EMDB-36801:
Potassium transporter KtrAB from Bacillus subtilis in ADP-bound state, focused refined on KtrA octamer
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD

EMDB-36802:
Potassium transporter KtrAB from Bacillus subtilis in ADP-bound state, focused refined on KtrB dimer
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD

EMDB-36803:
Potassium transporter KtrAB from Bacillus subtilis in ATP-bound state with addition of MgCl2
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD

EMDB-36804:
Potassium transporter KtrAB from Bacillus subtilis in ATP-bound state with addition of EDTA and EGTA
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD

EMDB-38477:
Potassium transporter KtrAB from Bacillus subtilis in ATP-bound state with addition of EDTA and EGTA, vertical C2 symmetry axis
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD

EMDB-38478:
Potassium transporter KtrAB from Bacillus subtilis in ATP-bound state with addition of EDTA and EGTA, C1 symmetry
Method: single particle / : Chang YK, Chiang WT, Hu NJ, Tsai MD

EMDB-37089:
The in-situ map of RyR1 in skeletal muscle of mouse
Method: subtomogram averaging / : Sun F, Zhu Y, Xu J

EMDB-37092:
The in-situ map of RyR1-DHPR super-complex in skeletal muscle of mouse
Method: subtomogram averaging / : Sun F, Zhu Y, Xu J

EMDB-37093:
The C1 in-situ map of RyR1-DHPR super-complex in skeletal muscle of mouse
Method: subtomogram averaging / : Sun F, Zhu Y, Xu J

EMDB-37094:
The in-situ map of the dimer of adjacent RyR1s in skeletal muscle of mouse
Method: subtomogram averaging / : Sun F, Zhu Y, Xu J

EMDB-38650:
Additional map for SARS-CoV-2 Spike D614G variant, one RBD-up conformation 1 (PDB ID: 7EAZ; EMD-31047). Map was generated from heterogeneous refinement with downsampling in CryoSPARC
Method: single particle / : Yang TJ, Yu PY, Hsu STD

EMDB-42526:
Alpha7-nicotinic acetylcholine receptor bound to epibatidine
Method: single particle / : Burke SM, Hibbs RE, Noviello CM

EMDB-42537:
Alpha7-nicotinic acetylcholine receptor bound to epibatidine and NS-1738
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-42841:
Alpha7-nicotinic acetylcholine receptor bound to epibatidine and ivermectin
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43012:
Alpha7-nicotinic acetylcholine receptor bound to epibatidine and (-)-TQS
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43015:
Alpha7-nicotinic acetylcholine receptor bound to epibatidine and PNU-120596
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43025:
Alpha7-nicotinic acetylcholine receptor bound to GAT107
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43030:
Alpha7-nicotinic acetylcholine receptor bound to epibatidine and GAT107
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43031:
Alpha7-nicotinic acetylcholine receptor time resolved resting state
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43032:
Alpha7-nicotinic acetylcholine receptor time resolved bound to epibatidine and PNU-120596 desensitized intermediate state
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43034:
Alpha7-nicotinic acetylcholine receptor time resolved bound to epibatidine and PNU-120596 asymmetric state 1
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

EMDB-43035:
Alpha7-nicotinic acetylcholine receptor time resolved bound to epibatidine and PNU-120596 asymmetric state 2
Method: single particle / : Burke SM, Noviello CM, Hibbs RE

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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

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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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