EMD-30421

Single-particle
3.0 Å
EMD-30421 Deposition: 06/08/2020
Map released: 28/04/2021
Last modified: 27/03/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-30421

Cryo-EM structure of human mitochondrial translocase TOM complex at 3.o angstrom.

EMD-30421

Single-particle
3.0 Å
EMD-30421 Deposition: 06/08/2020
Map released: 28/04/2021
Last modified: 27/03/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Name: TOM translocase
Complex [1]
Name: TOM translocase
Natural source [1]
Organism: Homo sapiens
Molecular weight
Experimental Theoretical Method
- 440.0 kDa/nm -
Complex Portal [1]
Protein [5]
Name: Mitochondrial import receptor subunit TOM5 homolog
Number of copies: 2
UniProtKB UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Homo sapiens
Molecular weight
Experimental Theoretical Method
- 6 kDa -
Recombinant Expression
Organism Strain Cell Plasmid
Homo sapiens - - -
Name: Mitochondrial import receptor subunit TOM6 homolog
Number of copies: 2
UniProtKB UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Homo sapiens
Molecular weight
Experimental Theoretical Method
- 8 kDa -
Recombinant Expression
Organism Strain Cell Plasmid
Homo sapiens - - -
Name: Mitochondrial import receptor subunit TOM7 homolog
Number of copies: 2
UniProtKB UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Homo sapiens
Molecular weight
Experimental Theoretical Method
- 6 kDa -
Recombinant Expression
Organism Strain Cell Plasmid
Homo sapiens - - -
Name: Mitochondrial import receptor subunit TOM22 homolog
Number of copies: 2
UniProtKB UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Homo sapiens
Molecular weight
Experimental Theoretical Method
- 15 kDa -
Recombinant Expression
Organism Strain Cell Plasmid
Homo sapiens - - -
Ligand [1]
Name: 1,2-DIACYL-SN-GLYCERO-3-PHOSPHOCHOLINE
HET code: PC1
Number of copies: 11
ChEBI
Molecular weight
Experimental Theoretical Method
- 790 Da -