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Showing 1 - 50 of 1,083 items for (author: xu & th)

EMDB-29330:
N332-GT5 SOSIP in complex with base polyclonal Fabs isolated at day 42 from protein immunized wild type mice
Method: single particle / : Torres JL, Jackson AM, Ozorowski G, Ward AB

EMDB-29333:
N332-GT5 SOSIP in complex with base polyclonal Fabs isolated at day 42 from protein immunized BG18HCgl knock-in mice
Method: single particle / : Torres JL, Jackson AM, Ozorowski G, Ward AB

EMDB-29334:
N332-GT5 SOSIP in complex with V1V3 polyclonal Fabs isolated at day 16 from mRNA immunized wild type mice
Method: single particle / : Torres JL, Jackson AM, Ozorowski G, Ward AB

EMDB-29335:
N332-GT5 SOSIP in complex with V1V3 polyclonal Fabs isolated at day 42 from mRNA immunized BG18HCgl knock-in mice
Method: single particle / : Torres JL, Jackson AM, Ozorowski G, Ward AB

EMDB-43191:
N332-GT5 SOSIP in complex with V1V3 polyclonal Fabs isolated at day 14 from N332-GT2 nanoparticle-immunized BG18HCgl knock-in mice
Method: single particle / : Ozorowski G, Torres JL, Ward AB

EMDB-43192:
N332-GT5 SOSIP in complex with V1V3 polyclonal Fabs isolated at day 15 from N332-GT5 nanoparticle-immunized BG18HCgl knock-in mice
Method: single particle / : Ozorowski G, Torres JL, Ward AB

EMDB-42837:
Cryo-EM structure of GeoCas9 in complex with sgRNA and target DNA
Method: single particle / : Eggers AR, Soczek KM, Tuck OT, Doudna JA

EMDB-42838:
Cryo-EM structure of iGeoCas9 in complex with sgRNA and target DNA
Method: single particle / : Eggers AR, Soczek KM, Tuck OT, Doudna JA

EMDB-41248:
Structure of AT118-H Nanobody Antagonist in Complex with the Angiotensin II Type I Receptor
Method: single particle / : Skiba MA, Kruse AC

EMDB-41249:
Structure of AT118-L Nanobody Antagonist in Complex with the Angiotensin II Type I Receptor and Losartan
Method: single particle / : Skiba MA, Kruse AC

PDB-8th3:
Structure of AT118-H Nanobody Antagonist in Complex with the Angiotensin II Type I Receptor
Method: single particle / : Skiba MA, Kruse AC

PDB-8th4:
Structure of AT118-L Nanobody Antagonist in Complex with the Angiotensin II Type I Receptor and Losartan
Method: single particle / : Skiba MA, Kruse AC

EMDB-28941:
HIV Env BG505_MD39_B11 SOSIP boosting trimer in complex with B11_d77.7 mouse Fab and RM20A3 Fab
Method: single particle / : Torres JL, Ozorowski G, Ward AB

EMDB-28942:
HIV Env germline targeting BG505_MD64_N332-GT5 SOSIP in complex with V3-glycan polyclonal Fab isolated from immunized BG18HCgl knock-in mice
Method: single particle / : Ozorowski G, Torres JL, Ward AB

EMDB-28945:
HIV Env germline targeting BG505_MD64_N332-GT5 SOSIP in complex with V3-glycan polyclonal Fab isolated from immunized wild type mice, and NHP monoclonal Fab RM20A3
Method: single particle / : Ozorowski G, Ward AB

EMDB-43190:
HIV Env BG505_MD39_B16 SOSIP boosting trimer in complex with B16_d77.5 mouse Fab and RM20A3 Fab
Method: single particle / : Ozorowski G, Torres JL, Ward AB

PDB-8f92:
HIV Env BG505_MD39_B11 SOSIP boosting trimer in complex with B11_d77.7 mouse Fab and RM20A3 Fab
Method: single particle / : Torres JL, Ozorowski G, Ward AB

PDB-8f9g:
HIV Env germline targeting BG505_MD64_N332-GT5 SOSIP in complex with V3-glycan polyclonal Fab isolated from immunized BG18HCgl knock-in mice
Method: single particle / : Ozorowski G, Torres JL, Ward AB

PDB-8f9m:
HIV Env germline targeting BG505_MD64_N332-GT5 SOSIP in complex with V3-glycan polyclonal Fab isolated from immunized wild type mice, and NHP monoclonal Fab RM20A3
Method: single particle / : Ozorowski G, Ward AB

PDB-8vfv:
HIV Env BG505_MD39_B16 SOSIP boosting trimer in complex with B16_d77.5 mouse Fab and RM20A3 Fab
Method: single particle / : Ozorowski G, Torres JL, Ward AB

EMDB-43753:
Yeast U1 snRNP with humanized U1C Zinc-Finger domain
Method: single particle / : Shi SS, Kuang ZL, Zhao R

PDB-8w2o:
Yeast U1 snRNP with humanized U1C Zinc-Finger domain
Method: single particle / : Shi SS, Kuang ZL, Zhao R

EMDB-40180:
MsbA bound to cerastecin C
Method: single particle / : Chen Y, Klein D

PDB-8gk7:
MsbA bound to cerastecin C
Method: single particle / : Chen Y, Klein D

EMDB-41907:
Computationally Designed, Expandable O4 Octahedral Handshake Nanocage
Method: single particle / : Weidle C, Borst A

EMDB-42031:
Computational Designed Nanocage O43_129_+8
Method: single particle / : Weidle C, Kibler RD

EMDB-41235:
VMAT1 dimer with MPP+ and reserpine
Method: single particle / : Ye J, Liu B, Li W

EMDB-41236:
VMAT1 dimer with amphetamine and reserpine
Method: single particle / : Ye J, Liu B, Li W

EMDB-41237:
VMAT1 dimer with dopamine and reserpine
Method: single particle / : Ye J, Liu B, Li W

EMDB-41238:
VMAT1 dimer in unbound form and with reserpine
Method: single particle / : Ye J, Liu B, Li W

EMDB-41239:
VMAT1 dimer with histamine and reserpine
Method: single particle / : Ye J, Liu B, Li W

EMDB-41240:
VMAT1 dimer with norepinephrine and reserpine
Method: single particle / : Ye J, Liu B, Li W

EMDB-41241:
VMAT1 dimer with reserpine
Method: single particle / : Ye J, Liu B, Li W

EMDB-41242:
VMAT1 dimer with serotonin and reserpine
Method: single particle / : Ye J, Liu B, Li W

PDB-8tgg:
VMAT1 dimer with MPP+ and reserpine
Method: single particle / : Ye J, Liu B, Li W

PDB-8tgh:
VMAT1 dimer with amphetamine and reserpine
Method: single particle / : Ye J, Liu B, Li W

PDB-8tgi:
VMAT1 dimer with dopamine and reserpine
Method: single particle / : Ye J, Liu B, Li W

PDB-8tgj:
VMAT1 dimer in unbound form and with reserpine
Method: single particle / : Ye J, Liu B, Li W

PDB-8tgk:
VMAT1 dimer with histamine and reserpine
Method: single particle / : Ye J, Liu B, Li W

PDB-8tgl:
VMAT1 dimer with norepinephrine and reserpine
Method: single particle / : Ye J, Liu B, Li W

PDB-8tgm:
VMAT1 dimer with reserpine
Method: single particle / : Ye J, Liu B, Li W

PDB-8tgn:
VMAT1 dimer with serotonin and reserpine
Method: single particle / : Ye J, Liu B, Li W

EMDB-43318:
Twistless helix 12 repeat ring design R12B
Method: single particle / : Calise SJ, Kollman JM

EMDB-29974:
Cryo-EM structure of synthetic tetrameric building block sC4
Method: single particle / : Redler RL, Huddy TF, Hsia Y, Baker D, Ekiert D, Bhabha G

EMDB-41364:
CryoEM Structure of a Computationally Designed T3 Tetrahedral Nanocage
Method: single particle / : Weidle C, Borst AJ

EMDB-42906:
Computational Designed Nanocage O43_129
Method: single particle / : Weidle C, Kibler RD

EMDB-42944:
Computational Designed Nanocage O43_129_+4
Method: single particle / : Carr KD, Weidle C, Borst AJ

PDB-8gel:
Cryo-EM structure of synthetic tetrameric building block sC4
Method: single particle / : Redler RL, Huddy TF, Hsia Y, Baker D, Ekiert D, Bhabha G

PDB-8tl7:
CryoEM Structure of a Computationally Designed T3 Tetrahedral Nanocage
Method: single particle / : Weidle C, Borst AJ

PDB-8v2d:
Computational Designed Nanocage O43_129
Method: single particle / : Weidle C, Kibler RD

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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

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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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