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Showing 1 - 50 of 122 items for (author: cone & a)

EMDB-53423: 
Human vault protein - committed conformation
Method: single particle / : Lapenta F, Marechal N, Durand A, Aupic J, Cassetta A

PDB-9qwq: 
Human vault protein - committed conformation
Method: single particle / : Lapenta F, Marechal N, Durand A, Aupic J, Cassetta A

EMDB-53415: 
Human vault protein - primed conformation
Method: single particle / : Lapenta F, Marechal N, Durand A, Aupic J, Cassetta A

EMDB-53438: 
Human vault protein - local refinement of the waist - primed conformation
Method: single particle / : Lapenta F, Marechal N, Durand A, Aupic J, Cassetta A

EMDB-53439: 
Human vault protein - local refinement of the waist - committed conformation
Method: single particle / : Lapenta F, Marechal N, Durand A, Aupic J, Cassetta A

EMDB-53440: 
39-mer half of the human vault protein
Method: single particle / : Lapenta F, Marechal N, Durand A, Aupic J, Cassetta A

PDB-9qw9: 
Human vault protein - primed conformation
Method: single particle / : Lapenta F, Marechal N, Durand A, Aupic J, Cassetta A

EMDB-49511: 
CH35 V1V2V3 and gp41-base macaque polyclonal Fabs in complex with Q23-APEX-GT2 trimer
Method: single particle / : Lee WH, Ozorowski G, Ward AB

EMDB-49512: 
CH35 gp41-FP macaque polyclonal Fab in complex with Q23-APEX-GT2 trimer
Method: single particle / : Lee WH, Ozorowski G, Ward AB

EMDB-49513: 
CH70 gp41-GH macaque polyclonal Fab in complex with Q23-APEX-GT2 trimer
Method: single particle / : Lee WH, Ozorowski G, Ward AB

EMDB-49865: 
Cryo-EM structure of V2 apex germline-targeting HIV Env trimer Q23-APEX-GT2
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

EMDB-49866: 
Cryo-EM structure of rhesus antibody CH35-Apex1.08 in complex with HIV Env trimer Q23-APEX-GT2
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

EMDB-49867: 
Cryo-EM structure of rhesus antibody CI91-Apex1.01 in complex with HIV Env trimer Q23-APEX-GT2
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

EMDB-49868: 
Cryo-EM structure of rhesus antibody CH70-Apex2.01 in complex with HIV Env trimer Q23-APEX-GT2
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

EMDB-49869: 
Cryo-EM structure of rhesus antibody CH70-Apex1.01 in complex with HIV Env trimer Q23-APEX-GT2
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

EMDB-49870: 
Cryo-EM structure of rhesus antibody CH42-Apex1.01 in complex with HIV Env trimer Q23-APEX-GT2
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

EMDB-49871: 
Cryo-EM structure of rhesus antibody CH42-Apex2.01 in complex with HIV Env trimer Q23-APEX-GT2
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

PDB-9nvv: 
Cryo-EM structure of V2 apex germline-targeting HIV Env trimer Q23-APEX-GT2
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

PDB-9nvw: 
Cryo-EM structure of rhesus antibody CH35-Apex1.08 in complex with HIV Env trimer Q23-APEX-GT2
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

PDB-9nvx: 
Cryo-EM structure of rhesus antibody CI91-Apex1.01 in complex with HIV Env trimer Q23-APEX-GT2
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

PDB-9nvy: 
Cryo-EM structure of rhesus antibody CH70-Apex2.01 in complex with HIV Env trimer Q23-APEX-GT2
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

PDB-9nvz: 
Cryo-EM structure of rhesus antibody CH70-Apex1.01 in complex with HIV Env trimer Q23-APEX-GT2
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

PDB-9nw0: 
Cryo-EM structure of rhesus antibody CH42-Apex1.01 in complex with HIV Env trimer Q23-APEX-GT2
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

PDB-9nw1: 
Cryo-EM structure of rhesus antibody CH42-Apex2.01 in complex with HIV Env trimer Q23-APEX-GT2
Method: single particle / : Roark RS, Shapiro LS, Kwong PD

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-49554: 
R162Q mutant of inwardly rectifying potassium channel Kir7.1
Method: single particle / : Peisley A, Cone R

EMDB-49555: 
ML418 bound inwardly rectifying potassium channel Kir7.1 R162Q mutant
Method: single particle / : Peisley A, Su M, Cone R

PDB-9nms: 
R162Q mutant of inwardly rectifying potassium channel Kir7.1
Method: single particle / : Peisley A, Cone R

PDB-9nmt: 
ML418 bound inwardly rectifying potassium channel Kir7.1 R162Q mutant
Method: single particle / : Peisley A, Su M, Cone R

EMDB-44442: 
Dimeric form of LDL, LDL receptor and Legobody
Method: single particle / : Dearborn AD, Reimund M, Graziano G, Lei H, Kumar A, Neufeld EB, Remaley AT, Marcotrigiano J

EMDB-44443: 
beta/alpha1 region of ApoB 100
Method: single particle / : Dearborn AD, Reimund M, Graziano G, Lei H, Kumar A, Neufeld EB, Remaley AT, Marcotrigiano J

EMDB-44446: 
ApoB 100 beta barrel bound to LDLR beta propeller
Method: single particle / : Dearborn AD, Reimund M, Graziano G, Lei H, Kumar A, Neufeld EB, Remaley AT, Marcotrigiano J

EMDB-44450: 
Middle Region of Apolipoprotein B 100 bound to Low Density Lipoprotein Receptor
Method: single particle / : Dearborn AD, Reimund M, Graziano G, Lei H, Kumar A, Neufeld EB, Remaley AT, Marcotrigiano J

EMDB-44469: 
Apolipoprotein B 100 bound to LDL receptor and legobody
Method: single particle / : Dearborn AD, Reimund M, Graziano G, Lei H, Kumar A, Neufeld EB, Remaley AT, Marcotrigiano J

EMDB-45787: 
Nanobody 4 bound to Apolipoprotein B 100
Method: single particle / : Dearborn AD, Kumar A, Reimund M, Graziano G, Lei H, Neufeld EB, Remaley AT, Marcotrigiano J

PDB-9bd1: 
beta/alpha1 region of ApoB 100
Method: single particle / : Dearborn AD, Reimund M, Graziano G, Lei H, Kumar A, Neufeld EB, Remaley AT, Marcotrigiano J

PDB-9bd8: 
ApoB 100 beta barrel bound to LDLR beta propeller
Method: single particle / : Dearborn AD, Reimund M, Graziano G, Lei H, Kumar A, Neufeld EB, Remaley AT, Marcotrigiano J

PDB-9bde: 
Middle Region of Apolipoprotein B 100 bound to Low Density Lipoprotein Receptor
Method: single particle / : Dearborn AD, Reimund M, Graziano G, Lei H, Kumar A, Neufeld EB, Remaley AT, Marcotrigiano J

PDB-9bdt: 
Apolipoprotein B 100 bound to LDL receptor and legobody
Method: single particle / : Dearborn AD, Reimund M, Graziano G, Lei H, Kumar A, Neufeld EB, Remaley AT, Marcotrigiano J

PDB-9coo: 
Nanobody 4 bound to Apolipoprotein B 100
Method: single particle / : Dearborn AD, Kumar A, Reimund M, Graziano G, Lei H, Neufeld EB, Remaley AT, Marcotrigiano J

EMDB-18973: 
Cryo-EM structure of Human SHMT1
Method: single particle / : Spizzichino S, Marabelli C, Bharadwaj A, Jakobi AJ, Chaves-Sanjuan A, Giardina G, Bolognesi M, Cutruzzola F

PDB-8r7h: 
Cryo-EM structure of Human SHMT1
Method: single particle / : Spizzichino S, Marabelli C, Bharadwaj A, Jakobi AJ, Chaves-Sanjuan A, Giardina G, Bolognesi M, Cutruzzola F

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
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