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Showing 1 - 50 of 1,667 items for (author: kun & z)

EMDB-54015:
Insulin receptor ectodomain in apo-conformation
Method: single particle / : Polak M, Novacek J, Jiracek J

EMDB-54023:
Insulin receptor ectodomain in complex with s661 insulin mimetic
Method: single particle / : Polak M, Novacek J, Jiracek J

EMDB-75011:
MP1104-bound Kappa Opioid Receptor in complex with beta-arrestin1
Method: single particle / : Han J, Chen M, Che T

PDB-9zzo:
MP1104-bound Kappa Opioid Receptor in complex with beta-arrestin1
Method: single particle / : Han J, Chen M, Che T

EMDB-65360:
Structure of human proteasome ATPase-CP intermediate assembles with 15min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

EMDB-65361:
Structure of human proteasome ATPase-CP intermediate assembles with 90min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

EMDB-65362:
Structure of human proteasome ATPase-CP intermediate assembles with 90min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

PDB-9vue:
Structure of human proteasome ATPase-CP intermediate assembles with 15min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

PDB-9vuf:
Structure of human proteasome ATPase-CP intermediate assembles with 90min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

PDB-9vug:
Structure of human proteasome ATPase-CP intermediate assembles with 90min rapaprotin addition
Method: single particle / : Wang WL, Yin DY, Mao YD

EMDB-66342:
Cryo-EM structure of reduced form of formatedehydrogenase from Rhodobacter aestuarii (RaFDH) with NADH
Method: single particle / : Zhang K, Zhang L

PDB-9wxb:
Cryo-EM structure of reduced form of formatedehydrogenase from Rhodobacter aestuarii (RaFDH) with NADH
Method: single particle / : Zhang K, Zhang L

EMDB-65508:
Cryo-EM structure of S1P2 in complex with heterotrimeric G protein
Method: single particle / : Wu B, Zhao Q, Tan Q

EMDB-65510:
cryoEM structure of S1P3 in complex with heterotrimeric G protein
Method: single particle / : Wu B, Zhao Q, Tan Q

PDB-9w0m:
Cryo-EM structure of S1P2 in complex with heterotrimeric G protein
Method: single particle / : Wu B, Zhao Q, Tan Q

PDB-9w0o:
cryoEM structure of S1P3 in complex with heterotrimeric G protein
Method: single particle / : Wu B, Zhao Q, Tan Q

EMDB-69005:
Cannabinoid Receptor 1-Gi Complex
Method: single particle / : Liao Y, Zhang Y

EMDB-69006:
Cannabinoid Receptor 1-Gi Complex
Method: single particle / : Liao Y, Zhang Y

PDB-23iv:
Cannabinoid Receptor 1-Gi Complex
Method: single particle / : Liao Y, Zhang Y

PDB-23iw:
Cannabinoid Receptor 1-Gi Complex
Method: single particle / : Liao Y, Zhang Y

EMDB-53004:
Structure of eIF2B decamer bound to (P)eIF2 alpha and Compound A-(S)
Method: single particle / : Shilliday F, Maia de Oliveira T, Gancedo-Rodrigo M

PDB-9qc6:
Structure of eIF2B decamer bound to (P)eIF2 alpha and Compound A-(S)
Method: single particle / : Shilliday F, Maia de Oliveira T, Gancedo-Rodrigo M

EMDB-67993:
Cryo-EM structure of the TNF-alpha-Ozoralizumab (OZR)-HSA complex
Method: single particle / : Tanaka Y, Sato K, Mima M, Mishima-Tsumagari C

EMDB-67994:
TNF-alpha in complex with the TNF-alpha inhibitor Ozoralizumab (OZR)
Method: single particle / : Tanaka Y, Sato K, Mima M, Mishima-Tsumagari C

PDB-21tv:
Cryo-EM structure of the TNF-alpha-Ozoralizumab (OZR)-HSA complex
Method: single particle / : Tanaka Y, Sato K, Mima M, Mishima-Tsumagari C

PDB-21tw:
Cryo-EM structure of TNF-alpha in complex with two anti-TNF-alpha nanobodies, TNF30, derived from the TNF-alpha inhibitor Ozoralizumab (OZR)
Method: single particle / : Tanaka Y, Sato K, Mima M, Mishima-Tsumagari C

EMDB-67552:
Cryo-EM structure of type VII CRISPR-Cas complex at the target engagement state
Method: single particle / : Zhang H, Zhang S

PDB-21bh:
Cryo-EM structure of type VII CRISPR-Cas complex at the target engagement state
Method: single particle / : Zhang H, Zhang S

EMDB-76230:
Structure of TMEM106B doublet from patient brain derived lysosomes
Method: subtomogram averaging / : Fernandez MF, Mosalaganti S

EMDB-76248:
Structure of TMEM106B singlet from patient brain derived lysosomes
Method: subtomogram averaging / : Fernandez MF, Mosalaganti S

EMDB-61577:
Cryo-EM structure of DRT2-RT-ncRNA binary complex
Method: single particle / : Zhang H, Zhang S

PDB-9jl3:
Cryo-EM structure of DRT2-RT-ncRNA binary complex
Method: single particle / : Zhang H, Zhang S

EMDB-47956:
Cryo-EM model of E. coli aspartate transcarbamoylase in the ligand-free T-state
Method: single particle / : Miller RC, Ando N

EMDB-47957:
Cryo-EM model of E. coli aspartate transcarbamoylase in the T-state complexed with CP, CTP, UTP, and Mg2+
Method: single particle / : Miller RC, Ando N

EMDB-47958:
Cryo-EM model of E. coli aspartate transcarbamoylase in the R-state complexed with CP, succinate, CTP, UTP, and Mg2+
Method: single particle / : Miller RC, Ando N

EMDB-47960:
Cryo-EM model of E. coli aspartate transcarbamoylase in the R-state complexed with CP, succinate, CTP, and Mg2+
Method: single particle / : Miller RC, Ando N

EMDB-47961:
Cryo-EM model of E. coli aspartate transcarbamoylase in the R-state complexed with CP and succinate
Method: single particle / : Miller RC, Ando N

EMDB-47963:
Cryo-EM model of E. coli aspartate transcarbamoylase in the R-state complexed with CP, succinate, ATP, and Mg2+
Method: single particle / : Miller RC, Ando N

EMDB-47964:
Cryo-EM model of E. coli aspartate transcarbamoylase in the R-state complexed with CP, succinate, ATP, GTP, and Mg2+
Method: single particle / : Miller RC, Ando N

EMDB-47965:
Cryo-EM model of E. coli aspartate transcarbamoylase in an expanded state complexed with CP, ATP, GTP, and Mg2+
Method: single particle / : Miller RC, Ando N

EMDB-47966:
Cryo-EM model of E. coli aspartate transcarbamoylase in the T-state complexed with CP, ATP, and Mg2+
Method: single particle / : Miller RC, Ando N

PDB-9eek:
Cryo-EM model of E. coli aspartate transcarbamoylase in the ligand-free T-state
Method: single particle / : Patterson MG, Miller RC, Ando N

PDB-9eel:
Cryo-EM model of E. coli aspartate transcarbamoylase in the T-state complexed with CP, CTP, UTP, and Mg2+
Method: single particle / : Miller RC, Ando N

PDB-9eem:
Cryo-EM model of E. coli aspartate transcarbamoylase in the R-state complexed with CP, succinate, CTP, UTP, and Mg2+
Method: single particle / : Patterson MG, Miller RC, Ando N

PDB-9eeo:
Cryo-EM model of E. coli aspartate transcarbamoylase in the R-state complexed with CP, succinate, CTP, and Mg2+
Method: single particle / : Patterson MG, Miller RC, Ando N

PDB-9eep:
Cryo-EM model of E. coli aspartate transcarbamoylase in the R-state complexed with CP and succinate
Method: single particle / : Patterson MG, Miller RC, Ando N

PDB-9eeq:
Cryo-EM model of E. coli aspartate transcarbamoylase in the R-state complexed with CP, succinate, ATP, and Mg2+
Method: single particle / : Patterson MG, Miller RC, Ando N

PDB-9eer:
Cryo-EM model of E. coli aspartate transcarbamoylase in the R-state complexed with CP, succinate, ATP, GTP, and Mg2+
Method: single particle / : Patterson MG, Miller RC, Ando N

PDB-9ees:
Cryo-EM model of E. coli aspartate transcarbamoylase in an expanded state complexed with CP, ATP, GTP, and Mg2+
Method: single particle / : Patterson MG, Miller RC, Ando N

PDB-9eeu:
Cryo-EM model of E. coli aspartate transcarbamoylase in the T-state complexed with CP, ATP, and Mg2+
Method: single particle / : Patterson MG, Miller RC, Ando N

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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

  • Version 3 of the EMDB header file is now the official format.
  • The previous official version 1.9 will be removed from the archive.

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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

  • The Nobel Prize in Physiology or Medicine 2021 was awarded jointly to David Julius and Ardem Patapoutian "for their discoveries of receptors for temperature and touch."
  • EM Navigator can help to find cryo-EM structure data by both pioneers.

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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