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Showing 1 - 50 of 435 items for (author: chu & hy)

EMDB-38216:
Cryo-EM structure of SARS-CoV-2 S-BQ.1 in complex with antibody O5C2

EMDB-40825:
10E8-GT10.2 immunogen in complex with human Fab 10E8 and mouse Fab W6-10

PDB-8sx3:
10E8-GT10.2 immunogen in complex with human Fab 10E8 and mouse Fab W6-10

EMDB-41024:
MD65 N332-GT5 SOSIP in complex with RM_N332_03 Fab and RM20A3 Fab

EMDB-41025:
MD65 N332-GT5 SOSIP in complex with RM_N332_36 Fab and RM20A3 Fab

EMDB-41026:
MD65 N332-GT5 SOSIP in complex with RM_N332_32 Fab and RM20A3

EMDB-41027:
MD65 N332-GT5 SOSIP in complex with RM_N332_08 Fab and RM20A3 Fab

EMDB-41034:
MD64 N332-GT5 SOSIP

EMDB-41035:
MD65 N332-GT5 SOSIP in complex with RM_N332_07 Fab and RM20A3 Fab

PDB-8t49:
MD65 N332-GT5 SOSIP in complex with RM_N332_03 Fab and RM20A3 Fab

PDB-8t4a:
MD65 N332-GT5 SOSIP in complex with RM_N332_36 Fab and RM20A3 Fab

PDB-8t4b:
MD65 N332-GT5 SOSIP in complex with RM_N332_32 Fab and RM20A3

PDB-8t4d:
MD65 N332-GT5 SOSIP in complex with RM_N332_08 Fab and RM20A3 Fab

PDB-8t4k:
MD64 N332-GT5 SOSIP

PDB-8t4l:
MD65 N332-GT5 SOSIP in complex with RM_N332_07 Fab and RM20A3 Fab

EMDB-17731:
Structure of the human mitochondrial iron-sulfur cluster biosynthesis complex during persulfide transfer (consensus map)

EMDB-17732:
Structure of the human mitochondrial iron-sulfur cluster biosynthesis complex during persulfide transfer (persulfide on ISCU2)

EMDB-17733:
Structure of the human mitochondrial iron-sulfur cluster biosynthesis complex during persulfide transfer (persulfide on NFS1 and ISCU2)

EMDB-17734:
Structure of the human mitochondrial iron-sulfur cluster biosynthesis complex during persulfide transfer (without frataxin)

PDB-8pk8:
Structure of the human mitochondrial iron-sulfur cluster biosynthesis complex during persulfide transfer (persulfide on ISCU2)

PDB-8pk9:
Structure of the human mitochondrial iron-sulfur cluster biosynthesis complex during persulfide transfer (persulfide on NFS1 and ISCU2)

PDB-8pka:
Structure of the human mitochondrial iron-sulfur cluster biosynthesis complex during persulfide transfer (without frataxin)

EMDB-41907:
Computationally Designed, Expandable O4 Octahedral Handshake Nanocage

EMDB-42031:
Computational Designed Nanocage O43_129_+8

EMDB-43318:
Twistless helix 12 repeat ring design R12B

EMDB-29974:
Cryo-EM structure of synthetic tetrameric building block sC4

EMDB-41364:
CryoEM Structure of a Computationally Designed T3 Tetrahedral Nanocage

EMDB-42906:
Computational Designed Nanocage O43_129

EMDB-42944:
Computational Designed Nanocage O43_129_+4

PDB-8gel:
Cryo-EM structure of synthetic tetrameric building block sC4

PDB-8tl7:
CryoEM Structure of a Computationally Designed T3 Tetrahedral Nanocage

PDB-8v2d:
Computational Designed Nanocage O43_129

PDB-8v3b:
Computational Designed Nanocage O43_129_+4

EMDB-29877:
Exploiting Activation and Inactivation Mechanisms in Type I-C CRISPR-Cas3 for Genome Editing Applications

EMDB-29878:
Exploiting Activation and Inactivation Mechanisms in Type I-C CRISPR-Cas3 for Genome Editing Applications

EMDB-29879:
Exploiting Activation and Inactivation Mechanisms in Type I-C CRISPR-Cas3 for Genome Editing Applications

EMDB-29896:
Exploiting Activation and Inactivation Mechanisms in Type I-C CRISPR-Cas3 for Genome Editing Applications

EMDB-29900:
Exploiting Activation and Inactivation Mechanisms in Type I-C CRISPR-Cas3 for Genome Editing Applications

EMDB-29901:
Exploiting Activation and Inactivation Mechanisms in Type I-C CRISPR-Cas3 for Genome Editing Applications

PDB-8g9s:
Exploiting Activation and Inactivation Mechanisms in Type I-C CRISPR-Cas3 for Genome Editing Applications

PDB-8g9t:
Exploiting Activation and Inactivation Mechanisms in Type I-C CRISPR-Cas3 for Genome Editing Applications

PDB-8g9u:
Exploiting Activation and Inactivation Mechanisms in Type I-C CRISPR-Cas3 for Genome Editing Applications

PDB-8gaf:
Exploiting Activation and Inactivation Mechanisms in Type I-C CRISPR-Cas3 for Genome Editing Applications

PDB-8gam:
Exploiting Activation and Inactivation Mechanisms in Type I-C CRISPR-Cas3 for Genome Editing Applications

PDB-8gan:
Exploiting Activation and Inactivation Mechanisms in Type I-C CRISPR-Cas3 for Genome Editing Applications

EMDB-35010:
Human Consensus Olfactory Receptor OR52c in Complex with Octanoic Acid (OCA) and G Protein

EMDB-35770:
Human Consensus Olfactory Receptor OR52c in Complex with Octanoic Acid (OCA) and G Protein (Consensus map)

EMDB-35772:
Human Consensus Olfactory Receptor OR52c in Complex with Octanoic Acid (OCA) and G Protein (Receptor-focused map)

EMDB-35773:
Human Consensus Olfactory Receptor OR52c in Complex with Octanoic Acid (OCA) and G Protein (G protein-focused map)

EMDB-35971:
Human Consensus Olfactory Receptor OR52c in apo state, OR52c-bRIL

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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

  • 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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Related info.:Covid-19 info / Mar 5, 2020. Novel coronavirus structure data

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Novel coronavirus structure data

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