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Showing all 46 items for (author: hayes & j)

EMDB-44587:
Cryo-EM Structure of the Helicobacter pylori dcagT PR
Method: single particle / : Roberts JR

EMDB-42290:
Cryo-EM Structure of the Helicobacter pylori CagYdAP OMC
Method: single particle / : Roberts JR

EMDB-42393:
Cryo-EM Structure of the Helicobacter pylori dcagM PR
Method: single particle / : Roberts JR

EMDB-26735:
Hantavirus ANDV Gn(H) protein in complex with 2 Fabs ANDV-5 and ANDV-34
Method: single particle / : Binshtein E, Crowe JE

EMDB-26736:
Hantavirus MAPV Gn(H)/Gc protein in complex with 2 Fabs SNV-24 and SNV-53
Method: single particle / : Binshtein E, Crowe JE

EMDB-27318:
CryoEM structure of Hantavirus ANDV Gn(H) protein complex with 2Fabs ANDV-5 and ANDV-34
Method: single particle / : Binshtein E, Crowe JE

PDB-8dbz:
CryoEM structure of Hantavirus ANDV Gn(H) protein complex with 2Fabs ANDV-5 and ANDV-34
Method: single particle / : Binshtein E, Crowe JE

EMDB-25568:
Structure of the yeast clamp loader (Replication Factor C RFC) bound to the sliding clamp (Proliferating Cell Nuclear Antigen PCNA) in an autoinhibited conformation
Method: single particle / : Gaubitz C, Demo G, Stone NP, Hayes JA, Liu X, Pajak J, Kelch BA

EMDB-25569:
Structure of the yeast clamp loader (Replication Factor C RFC) bound to the sliding clamp (Proliferating Cell Nuclear Antigen PCNA) in an autoinhibited conformation
Method: single particle / : Gaubitz C, Demo G, Stone NP, Hayes JA, Liu X, Pajak J, Kelch BA

EMDB-25614:
Structure of the yeast clamp loader (Replication Factor C RFC) bound to the sliding clamp (Proliferating Cell Nuclear Antigen PCNA) in an autoinhibited conformation
Method: single particle / : Gaubitz C, Demo G, Stone NP, Hayes JA, Liu X, Pajak J, Kelch BA

EMDB-25615:
Structure of the yeast clamp loader (Replication Factor C RFC) bound to the open sliding clamp (Proliferating Cell Nuclear Antigen PCNA)
Method: single particle / : Gaubitz C, Demo G, Stone NP, Hayes JA, Liu X, Pajak J, Kelch BA

EMDB-25616:
Structure of the yeast clamp loader (Replication Factor C RFC) bound to the open sliding clamp (Proliferating Cell Nuclear Antigen PCNA) and primer-template DNA
Method: single particle / : Gaubitz C, Demo G, Stone NP, Hayes JA, Liu X, Pajak J, Kelch BA

EMDB-25617:
Structure of the yeast clamp loader (Replication Factor C RFC) bound to the sliding clamp (Proliferating Cell Nuclear Antigen PCNA) and primer-template DNA
Method: single particle / : Gaubitz C, Demo G, Stone NP, Hayes JA, Liu X, Pajak J, Kelch BA

EMDB-25753:
Structure of the yeast clamp loader (Replication Factor C RFC) bound to the open sliding clamp (Proliferating Cell Nuclear Antigen PCNA)
Method: single particle / : Gaubitz C, Demo G, Stone NP, Hayes JA, Liu X, Pajak J, Kelch BA

PDB-7thj:
Structure of the yeast clamp loader (Replication Factor C RFC) bound to the sliding clamp (Proliferating Cell Nuclear Antigen PCNA) in an autoinhibited conformation
Method: single particle / : Gaubitz C, Liu X, Pajak J, Stone N, Hayes J, Demo G, Kelch BA

PDB-7thv:
Structure of the yeast clamp loader (Replication Factor C RFC) bound to the sliding clamp (Proliferating Cell Nuclear Antigen PCNA) in an autoinhibited conformation
Method: single particle / : Gaubitz C, Liu X, Pajak J, Stone N, Hayes J, Demo G, Kelch BA

PDB-7ti8:
Structure of the yeast clamp loader (Replication Factor C RFC) bound to the open sliding clamp (Proliferating Cell Nuclear Antigen PCNA)
Method: single particle / : Gaubitz C, Liu X, Pajak J, Stone N, Hayes J, Demo G, Kelch BA

PDB-7tib:
Structure of the yeast clamp loader (Replication Factor C RFC) bound to the open sliding clamp (Proliferating Cell Nuclear Antigen PCNA) and primer-template DNA
Method: single particle / : Gaubitz C, Liu X, Pajak J, Stone N, Hayes J, Demo G, Kelch BA

PDB-7tic:
Structure of the yeast clamp loader (Replication Factor C RFC) bound to the sliding clamp (Proliferating Cell Nuclear Antigen PCNA) in an autoinhibited conformation
Method: single particle / : Gaubitz C, Liu X, Pajak J, Stone N, Hayes J, Demo G, Kelch BA

PDB-7tid:
Structure of the yeast clamp loader (Replication Factor C RFC) bound to the sliding clamp (Proliferating Cell Nuclear Antigen PCNA) and primer-template DNA
Method: single particle / : Gaubitz C, Liu X, Pajak J, Stone N, Hayes J, Demo G, Kelch BA

PDB-7tku:
Structure of the yeast clamp loader (Replication Factor C RFC) bound to the open sliding clamp (Proliferating Cell Nuclear Antigen PCNA)
Method: single particle / : Gaubitz C, Liu X, Pajak J, Stone N, Hayes J, Demo G, Kelch BA

EMDB-24896:
CryoEM structure of Gq-coupled MRGPRX2 with peptide agonist Cortistatin-14
Method: single particle / : Cao C, Fay JF, Gumpper RH, Roth BL

EMDB-24897:
CryoEM structure of Gi-coupled MRGPRX2 with peptide agonist Cortistatin-14
Method: single particle / : Cao C, Fay JF, Gumpper RH, Roth BL

EMDB-24898:
CryoEM structure of Gq-coupled MRGPRX2 with small molecule agonist (R)-Zinc-3573
Method: single particle / : Cao C, Fay JF, Gumpper RH, Roth BL

EMDB-24899:
CryoEM structure of Gi-coupled MRGPRX2 with small molecule agonist (R)-Zinc-3573
Method: single particle / : Cao C, Fay JF, Gumpper RH, Roth BL

EMDB-24900:
CryoEM structure of Gq-coupled MRGPRX4 with small molecule agonist MS47134
Method: single particle / : Cao C, Fay JF, Gumpper RH, Roth BL

PDB-7s8l:
CryoEM structure of Gq-coupled MRGPRX2 with peptide agonist Cortistatin-14
Method: single particle / : Cao C, Fay JF, Gumpper RH, Roth BL

PDB-7s8m:
CryoEM structure of Gi-coupled MRGPRX2 with peptide agonist Cortistatin-14
Method: single particle / : Cao C, Fay JF, Gumpper RH, Roth BL

PDB-7s8n:
CryoEM structure of Gq-coupled MRGPRX2 with small molecule agonist (R)-Zinc-3573
Method: single particle / : Cao C, Fay JF, Gumpper RH, Roth BL

PDB-7s8o:
CryoEM structure of Gi-coupled MRGPRX2 with small molecule agonist (R)-Zinc-3573
Method: single particle / : Cao C, Fay JF, Gumpper RH, Roth BL

PDB-7s8p:
CryoEM structure of Gq-coupled MRGPRX4 with small molecule agonist MS47134
Method: single particle / : Cao C, Fay JF, Gumpper RH, Roth BL

EMDB-11997:
Structure of a nanoparticle for a COVID-19 vaccine candidate
Method: single particle / : Duyvesteyn HME, Stuart DI

PDB-7b3y:
Structure of a nanoparticle for a COVID-19 vaccine candidate
Method: single particle / : Duyvesteyn HME, Stuart DI

EMDB-22078:
Characterization of the SARS-CoV-2 S Protein: Biophysical, Biochemical, Structural, and Antigenic Analysis
Method: single particle / : Herrera NG, Morano NC, Celikgil A, Georgiev GI, Malonis R, Lee JH, Tong K, Vergnolle O, Massimi A, Yen LY, Noble AJ, Kopylov M, Bonanno JB, Garrett-Thompson SC, Hayes DB, Brenowitz M, Garforth SJ, Eng ET, Lai JR, Almo SC

PDB-6x6p:
Characterization of the SARS-CoV-2 S Protein: Biophysical, Biochemical, Structural, and Antigenic Analysis
Method: single particle / : Herrera NG, Morano NC, Celikgil A, Georgiev GI, Malonis R, Lee JH, Tong K, Vergnolle O, Massimi A, Yen LY, Noble AJ, Kopylov M, Bonanno JB, Garrett-Thompson SC, Hayes DB, Brenowitz M, Garforth SJ, Eng ET, Lai JR, Almo SC

EMDB-21012:
A small terminase protein from a thermophilic phage with a fixed helix-turn-helix geometry, symmetric
Method: single particle / : Hayes JA, Hilbert BJ

PDB-6v1i:
Cryo-EM reconstruction of the thermophilic bacteriophage P74-26 small terminase- symmetric
Method: single particle / : Hayes JA, Hilbert BJ, Gaubitz C, Stone NP, Kelch BA

EMDB-21013:
Cryo-EM reconstruction of the thermophilic bacteriophage P74-26 small terminase, asymmetric I
Method: single particle / : Hayes JA, Hilbert BJ, Gaubitz C, Stone NP, Kelch BA

EMDB-21014:
Cryo-EM reconstruction of the thermophilic bacteriophage P74-26 small terminase- asymmetric II
Method: single particle / : Hayes JA, Brendan BJ, Gaubitz C, Stone NP, Kelch BA

EMDB-8477:
CRISPR RNA-guided surveillance complex
Method: single particle / : Xiao Y, Luo M

EMDB-8478:
CRISPR RNA-guided surveillance complex
Method: single particle / : Xiao Y, Luo M

PDB-5u07:
CRISPR RNA-guided surveillance complex
Method: single particle / : Xiao Y, Luo M, Hayes RP, Kim J, Ng S, Ding F, Liao M, Ke A

PDB-5u0a:
CRISPR RNA-guided surveillance complex
Method: single particle / : Xiao Y, Luo M, Hayes RP, Kim J, Ng S, Ding F, Liao M, Ke A

EMDB-3657:
Nucleosome in complex with human histone H1.5dC50
Method: single particle / : Bednar J, Garcia-Saez I, Boopathi R, Cutter AR, Papai G, Reymer A, Syed SH, Lone IN, Tonchev O, Crucifix C, Menoni H, Papin C, Skoufias DA, Kurumizaka H, Lavery R, Hamiche A, Hayes JJ, Schultz P, Angelov D, Petosa C, Dimitrov S

EMDB-3659:
601 nucleosome in complex with X. laevis histone H1.0b
Method: single particle / : Bednar J, Garcia-Saez I, Boopathi R, Cutter AR, Papai G, Reymer A, Syed SH, Lone IN, Tonchev O, Crucfix C, Menoni H, Papin C, Skoufias DA, Kurumizaka H, Lavery R, Hamiche A, Hayes JJ, Schultz P, Angelov D, Petosa C, Dimitrov S

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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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