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Showing 1 - 50 of 1,450 items for (author: he & by)

EMDB-62778: 
Cryo-EM structure and rational engineering of a novel efficient ochratoxin A-detoxifying amidohydrolase
Method: single particle / : Dai LH, Xu YH, Hu YM, He BY, Huang JP, Xie ZZ, Li H, Niu D, Guo RT, Chen CC

EMDB-62780: 
Cryo-electron microscopic structure of a novel amidohydrolase with three mutations
Method: single particle / : Dai LH, Xu YH, Hu YM, He BY, Huang JP, Xie ZZ, Li H, Niu D, Guo RT, Chen CC

EMDB-62861: 
Cryo-electron microscopic structure of a highly efficient ochratoxin detoxification enzyme LlADH
Method: single particle / : Dai LH, Xu YH, Hu YM, Niu D, He BY, Huang JP, Xie ZZ, Li H, Guo RT, Chen CC

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

EMDB-54194: 
ZZ1-SO2H-induced assembly of the YPEL5-CTLH E3 ligase and BRD4(BD1) neosubstrate
Method: single particle / : Chrustowicz J, Schulman BA

EMDB-54215: 
Ternary complex of an improved charged molecular glue degrader ZZ2-SO2H, BRD4(BD1) neosubstrate, and the CTLH E3 ligase receptor module YPEL5-WDR26
Method: single particle / : Chrustowicz J, Schulman BA

EMDB-54216: 
Ternary complex of a charged molecular glue degrader ZZ1-SO2H, BRD4(BD1) neosubstrate, and the CTLH E3 ligase receptor module YPEL5-WDR26
Method: single particle / : Chrustowicz J, Schulman BA

PDB-9rsc: 
Ternary complex of an improved charged molecular glue degrader ZZ2-SO2H, BRD4(BD1) neosubstrate, and the CTLH E3 ligase receptor module YPEL5-WDR26
Method: single particle / : Chrustowicz J, Schulman BA

PDB-9rsd: 
Ternary complex of a charged molecular glue degrader ZZ1-SO2H, BRD4(BD1) neosubstrate, and the CTLH E3 ligase receptor module YPEL5-WDR26
Method: single particle / : Chrustowicz J, Schulman BA

EMDB-74043: 
Cryo-EM structure of the engineered vector AAV2.ATX002
Method: single particle / : Betegon M, Byrne LC, Conway JF

EMDB-75112: 
SK3D-Matured in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

EMDB-75120: 
OX1-Matured in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

EMDB-75121: 
SK5A-Matured apo state in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

EMDB-75122: 
SK5B-Matured in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

EMDB-75123: 
SK3D-Germline in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

EMDB-75127: 
SK5G-Matured in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

EMDB-75128: 
OX1-Germline in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

EMDB-75129: 
SK5A-Matured glycine/glutamate in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

EMDB-75134: 
SK5G-Germline
Method: single particle / : Kleeman SO, Furukawa HF

EMDB-75136: 
SK5A-Germline in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

EMDB-75138: 
SK5B-Germline in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

PDB-10en: 
SK3D-Matured in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

PDB-10ev: 
OX1-Matured in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

PDB-10ex: 
SK5A-Matured apo state in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

PDB-10ey: 
SK5B-Matured in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

PDB-10ez: 
SK3D-Germline in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

PDB-10fd: 
SK5G-Matured in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

PDB-10fe: 
OX1-Germline in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

PDB-10ff: 
SK5A-Matured glycine/glutamate in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

PDB-10fl: 
SK5G-Germline
Method: single particle / : Kleeman SO, Furukawa HF

PDB-10fn: 
SK5A-Germline in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

PDB-10fo: 
SK5B-Germline in complex with GluN1-GluN2B, full refinement
Method: single particle / : Kleeman SO, Furukawa HF

EMDB-52627: 
Ice-free ESIBD structure of GroEL
Method: single particle / : Barrass SV, Esser TK, Mowry NJ, Eriksson L, Hruby J, Seeley LT, Drabbels M, Baker LA, Rauschenbach S, Lorenz UJ

EMDB-71677: 
HIV-1 bnAb 1-23 in complex with BG505 MD39 SOSIP and RM19R
Method: single particle / : Bader DLV, Ozorowski G, Ward AB

EMDB-71678: 
HIV-1 bnAb 9-71 in complex with BG505 MD39 SOSIP and RM19R
Method: single particle / : Bader DLV, Ozorowski G, Ward AB

PDB-9pit: 
HIV-1 bnAb 1-23 in complex with BG505 MD39 SOSIP and RM19R
Method: single particle / : Bader DLV, Ozorowski G, Ward AB

PDB-9piv: 
HIV-1 bnAb 9-71 in complex with BG505 MD39 SOSIP and RM19R
Method: single particle / : Bader DLV, Ozorowski G, Ward AB

EMDB-74113: 
Competition for different elements of the nucleosome acidic patch yields distinct functional outcomes. VHH 1B2
Method: single particle / : Chakraborty U, Saccone EC, Becerra GC, Khan LF, Arslanovic N, Aguilar R, Gloor SL, Hunt SR, Folkwein HJ, Husby NL, Maier KE, Marunde MR, Schomburg NK, Vaidya A, Cowles MW, Venters BJ, Kassavetis G, Sun ZW, Kadonaga JT, Armache JP, Keogh MC, Tyler JK

EMDB-74114: 
Competition for different elements of the nucleosome acidic patch yields distinct functional outcomes. VHH 1G1
Method: single particle / : Chakraborty U, Saccone EC, Becerra GC, Khan LF, Arslanovic N, Aguilar R, Gloor SL, Hunt SR, Folkwein HJ, Husby NL, Maier KE, Marunde MR, Schomburg NK, Vaidya A, Cowles MW, Venters BJ, Kassavetis G, Sun ZW, Kadonaga JT, Armache JP, Keogh MC, Tyler JK

PDB-9zen: 
Competition for different elements of the nucleosome acidic patch yields distinct functional outcomes. VHH 1B2
Method: single particle / : Chakraborty U, Saccone EC, Becerra GC, Khan LF, Arslanovic N, Aguilar R, Gloor SL, Hunt SR, Folkwein HJ, Husby NL, Maier KE, Marunde MR, Schomburg NK, Vaidya A, Cowles MW, Venters BJ, Kassavetis G, Sun ZW, Kadonaga JT, Armache JP, Keogh MC, Tyler JK

PDB-9zeo: 
Competition for different elements of the nucleosome acidic patch yields distinct functional outcomes. VHH 1G1
Method: single particle / : Chakraborty U, Saccone EC, Becerra GC, Khan LF, Arslanovic N, Aguilar R, Gloor SL, Hunt SR, Folkwein HJ, Husby NL, Maier KE, Marunde MR, Schomburg NK, Vaidya A, Cowles MW, Venters BJ, Kassavetis G, Sun ZW, Kadonaga JT, Armache JP, Keogh MC, Tyler JK

EMDB-55526: 
Staphylococcus aureus 70S initiation complex with a natural mRNA
Method: single particle / : Bahena Ceron R, Klaholz B, Marzi S

PDB-9t4r: 
Staphylococcus aureus 70S initiation complex with a natural mRNA
Method: single particle / : Bahena Ceron R, Klaholz B, Marzi S

EMDB-52626: 
ESIBD structure of GroEL
Method: single particle / : Barrass SV, Esser TK, Mowry NJ, Eriksson L, Hruby J, Seeley LT, Drabbels M, Baker LA, Rauschenbach S, Lorenz UJ

EMDB-70622: 
Hepatitis C virus sE1E2.Cut1+2.SPYdeltaN bound to antibodies AR4A and AR3C
Method: single particle / : Janus BM, Gonzalez FG, Ofek G

EMDB-70623: 
Hepatitis C virus sE1E2.Cut1+2.SPYdeltaN bound to antibodies AR4A and HEPC74
Method: single particle / : Janus BM, Gonzalez FG, Ofek G

EMDB-74451: 
Cryo-EM structure of human UDP-N-acetylglucosamine-dolichyl-phosphate N-acetylglucosaminephosphotransferase (DPAGT1) in complex with APPB, composite map
Method: single particle / : Kirsh JM, Ochoa JM, Soroush-Pejrimovsky MT, Kaudeer BY, Clemons WM
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