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Showing 1 - 50 of 150 items for (author: chu & yk)

EMDB-51901:
SARS-CoV-2 S protein in complex with pT1679 Fab
Method: single particle / : Hansen G, Benecke T, Vollmer B, Gruenewald K, Krey T

PDB-9h6u:
SARS-CoV-2 S protein in complex with pT1679 Fab
Method: single particle / : Hansen G, Benecke T, Vollmer B, Gruenewald K, Krey T

EMDB-38333:
Cryo-EM map of the E2 inner core component of pyruvate dehydrogenase complex
Method: single particle / : Kim H, Jeong MS, An MY, Jung HS

EMDB-38334:
Cryo-EM map of the E2 inner core component of pyruvate dehydrogenase complex
Method: single particle / : Kim H, Jeong MS, An MY, Jung HS

EMDB-38335:
Cryo-EM map of the E2 inner core component of pyruvate dehydrogenase complex
Method: single particle / : Kim H, Jeong MS, An MY, Jung HS

EMDB-38336:
Cryo-EM map of the E2 inner core component of pyruvate dehydrogenase complex
Method: single particle / : Kim H, Jeong MS, An MY, Jung HS

EMDB-38340:
Cryo-EM map of the E2 inner core component of pyruvate dehydrogenase complex
Method: single particle / : Kim H, Jeong MS, An MY, Jung HS

EMDB-19049:
Cryo-EM structure of hexameric BTB domain of Drosophila CG6765 protein
Method: single particle / : Bonchuk AN, Naschberger A, Baradaran R

PDB-8rc6:
Cryo-EM structure of hexameric BTB domain of Drosophila CG6765 protein
Method: single particle / : Bonchuk AN, Naschberger A, Baradaran R

EMDB-43500:
Cryo-electron tomography of wildtype LAF-1 RGG domain protein condensates with fibrous necks
Method: electron tomography / : Jaber N, Dai W, Schuster BS, Patterson JP

EMDB-43502:
Cryo-Electron Tomography of Wildtype LAF-1 RGG Domain Condensate with Core/Shell Structure
Method: electron tomography / : Jaber N, Dai W, Schuster BS, Patterson JP

EMDB-43503:
Cryo-Electron Tomography of Wildtype LAF-1 RGG domain Condensate
Method: electron tomography / : Jaber N, Dai W, Schuster BS, Patterson JP

EMDB-43504:
Cryo-Electron Tomography of LAF-1 RGG Charge-Separated SH Mutant Condensate
Method: electron tomography / : Jaber N, Dai W, Schuster BS, Patterson JP

EMDB-42948:
Microtubule protofilament reconstruction in CCP5:microtubule class#1 complex
Method: single particle / : Chen J, Zehr EA, Gruschus JM, Szyk A, Liu Y, Tanner ME, Tjandra N, Roll-Mecak A

EMDB-44544:
Microtubule protofilament reconstruction in CCP5:microtubule class#2 complex
Method: single particle / : Chen J, Zehr EA, Gruschus JM, Szyk A, Liu Y, Tanner ME, Tjandra N, Roll-Mecak A

EMDB-44545:
Microtubule Protofilament reconstruction in CCP5:microtubule class#3 complex
Method: single particle / : Chen J, Zehr EA, Gruschus JM, Szyk A, Liu Y, Tanner ME, Tjandra N, Roll-Mecak A

EMDB-18779:
Structure of the non-mitochondrial citrate synthase from Ananas comosus
Method: single particle / : Lo YK, Bohn S, Sendker FL, Schuller JM, Hochberg G

EMDB-42950:
Structure of CCP5 class1
Method: single particle / : Chen J, Zehr EA, Gruschus JM, Szyk A, Liu Y, Tanner ME, Tjandra N, Roll-Mecak A

EMDB-42951:
Structure of CCP5 class2
Method: single particle / : Chen J, Zehr EA, Gruschus JM, Szyk A, Liu Y, Tanner ME, Tjandra N, Roll-Mecak A

EMDB-42952:
Structure of CCP5 class3
Method: single particle / : Chen J, Zehr EA, Gruschus JM, Szyk A, Liu Y, Tanner ME, Tjandra N, Roll-Mecak A

EMDB-42971:
CCP5 in complex with microtubules class1
Method: single particle / : Chen J, Zehr EA, Gruschus JM, Szyk A, Liu Y, Tanner ME, Tjandra N, Roll-Mecak A

EMDB-42972:
CCP5 in complex with microtubules class2
Method: single particle / : Chen J, Zehr EA, Gruschus JM, Szyk A, Liu Y, Tanner ME, Tjandra N, Roll-Mecak A

EMDB-42973:
CCP5 in complex with microtubules class3
Method: single particle / : Chen J, Zehr EA, Gruschus JM, Szyk A, Liu Y, Tanner ME, Tjandra N, Roll-Mecak A

PDB-8v3q:
Structure of CCP5 class1
Method: single particle / : Chen J, Zehr EA, Gruschus JM, Szyk A, Liu Y, Tanner ME, Tjandra N, Roll-Mecak A

PDB-8v3r:
Structure of CCP5 class2
Method: single particle / : Chen J, Zehr EA, Gruschus JM, Szyk A, Liu Y, Tanner ME, Tjandra N, Roll-Mecak A

PDB-8v3s:
Structure of CCP5 class3
Method: single particle / : Chen J, Zehr EA, Gruschus JM, Szyk A, Liu Y, Tanner ME, Tjandra N, Roll-Mecak A

PDB-8v4k:
CCP5 in complex with microtubules class1
Method: single particle / : Chen J, Zehr EA, Gruschus JM, Szyk A, Liu Y, Tanner ME, Tjandra N, Roll-Mecak A

PDB-8v4l:
CCP5 in complex with microtubules class2
Method: single particle / : Chen J, Zehr EA, Gruschus JM, Szyk A, Liu Y, Tanner ME, Tjandra N, Roll-Mecak A

PDB-8v4m:
CCP5 in complex with microtubules class3
Method: single particle / : Chen J, Zehr EA, Gruschus JM, Szyk A, Liu Y, Tanner ME, Tjandra N, Roll-Mecak A

EMDB-39126:
Structure of the FADD/Caspase-8/cFLIP death effector domain assembly
Method: single particle / : Lin SC, Yang CY

EMDB-39127:
Structure of the FADD/Caspase-8/cFLIP death effector domain assembly
Method: single particle / : Lin SC, Yang CY

PDB-8ybx:
Structure of the FADD/Caspase-8/cFLIP death effector domain assembly
Method: single particle / : Lin SC, Yang CY

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-16004:
Structure of hexameric subcomplexes (Truncation Delta2-6) of the fractal citrate synthase from Synechococcus elongatus PCC7942
Method: single particle / : Lo YK, Bohn S, Sendker FL, Schuller JM, Hochberg G

EMDB-19250:
Pseudoatomic model of a second-order Sierpinski triangle formed by the citrate synthase from Synechococcus elongatus
Method: single particle / : Lo YK, Bohn S, Sendker FL, Schuller JM, Hochberg G

EMDB-19251:
Structure of a first order Sierpinski triangle formed by the H369R mutant of the citrate synthase from Synechococcus elongatus
Method: single particle / : Lo YK, Bohn S, Sendker FL, Schuller JM, Hochberg G

EMDB-15529:
Structure of a first level Sierpinski triangle formed by a citrate synthase
Method: single particle / : Lo YK, Bohn S, Sendker FL, Schuller JM, Hochberg G

EMDB-42371:
Mouse apoferritin imaged with a square aperture
Method: single particle / : Chua EYD, Alink LM, Kopylov M, Johnston J, Einsenstein F, de Marco A

EMDB-42372:
Mouse apoferritin imaged with a round aperture
Method: single particle / : Chua EYD, Alink LM, Kopylov M, Johnston J, Einsenstein F, de Marco A

EMDB-42373:
Mouse apoferritin imaged with a square aperture with P2 projection lens rotation, reconstructed from 25,000 particles
Method: single particle / : Chua EYD, Alink LM, Kopylov M, Johnston J, Einsenstein F, de Marco A

EMDB-42374:
Mouse apoferritin imaged with a round aperture without P2 projection lens rotation, reconstructed from 25,000 particles
Method: single particle / : Chua EYD, Alink LM, Kopylov M, Johnston J, Einsenstein F, de Marco A

EMDB-36062:
Asfv topoisomerase 2 - apo conformer Ia
Method: single particle / : Chang CW, Tsai MD

EMDB-36063:
Asfv topoisomerase 2 - apo conformer Ib
Method: single particle / : Chang CW, Tsai MD

EMDB-36064:
Cryo-EM structure of Asfv topoisomerase 2 - apo conformer IIa
Method: single particle / : Chang CW, Tsai MD

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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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