EMD-12865

Single-particle
2.2 Å
EMD-12865 Deposition: 04/05/2021
Map released: 09/06/2021
Last modified: 30/06/2021
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-12865

Structure of a human mitochondrial ribosome large subunit assembly intermediate in complex with MTERF4-NSUN4 (dataset1).

EMD-12865

Single-particle
2.2 Å
EMD-12865 Deposition: 04/05/2021
Map released: 09/06/2021
Last modified: 30/06/2021
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Name: Human mitochondrial ribosome large subunit assembly intermediate in complex with MTERF4-NSUN4 (dataset1).
Summary:
Protein [54]
Name: 39S ribosomal protein L32, mitochondrial
Number of copies: 1
UniProtKB UniProtKB PDBe-KB PDBe-KB AlphaFold DB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 21 kDa -
Name: 39S ribosomal protein L33, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 7 kDa -
Name: 39S ribosomal protein L34, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 10 kDa -
Name: 39S ribosomal protein L35, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 21 kDa -
Name: 39S ribosomal protein L36, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 11 kDa -
Name: 39S ribosomal protein L37, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 48 kDa -
Name: 39S ribosomal protein L38, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 44 kDa -
Name: 39S ribosomal protein L39, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 38 kDa -
Name: 39S ribosomal protein L40, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 24 kDa -
Name: 39S ribosomal protein L41, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 15 kDa -
Name: 5-methylcytosine rRNA methyltransferase NSUN4
EC number: 2.1.1.-
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 43 kDa -
Name: 39S ribosomal protein L2, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 33 kDa -
Name: 39S ribosomal protein L3, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 38 kDa -
Name: 39S ribosomal protein L4, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 34 kDa -
Name: Transcription termination factor 4, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 44 kDa -
Name: 39S ribosomal protein L9, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 30 kDa -
Name: 39S ribosomal protein L10, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 29 kDa -
Name: 39S ribosomal protein L11, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 20 kDa -
Name: 39S ribosomal protein L13, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 20 kDa -
Name: 39S ribosomal protein L14, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 15 kDa -
Name: 39S ribosomal protein L15, mitochondrial
Number of copies: 1
UniProtKB UniProtKB PDBe-KB PDBe-KB AlphaFold DB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 33 kDa -
Name: 39S ribosomal protein L16, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 28 kDa -
Name: 39S ribosomal protein L17, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 20 kDa -
Name: 39S ribosomal protein L18, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 20 kDa -
Name: 39S ribosomal protein L19, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 33 kDa -
Name: 39S ribosomal protein L20, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 17 kDa -
Name: 39S ribosomal protein L21, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 22 kDa -
Name: 39S ribosomal protein L22, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 23 kDa -
Name: 39S ribosomal protein L23, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 17 kDa -
Name: 39S ribosomal protein L24, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 24 kDa -
Name: 39S ribosomal protein L27, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 16 kDa -
Name: 39S ribosomal protein L28, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 30 kDa -
Name: 39S ribosomal protein L47, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 29 kDa -
Name: 39S ribosomal protein L30, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 18 kDa -
Name: 39S ribosomal protein L42, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 16 kDa -
Name: 39S ribosomal protein L43, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 23 kDa -
Name: 39S ribosomal protein L44, mitochondrial
EC number: 3.1.26.-
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 37 kDa -
Name: 39S ribosomal protein L45, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Gene Ontology [5]
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 35 kDa -
Name: 39S ribosomal protein L46, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 31 kDa -
Name: 39S ribosomal protein L48, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 23 kDa -
Name: 39S ribosomal protein L49, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 19 kDa -
Name: 39S ribosomal protein L50, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 18 kDa -
Name: 39S ribosomal protein L51, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 15 kDa -
Name: 39S ribosomal protein L52, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 13 kDa -
Name: 39S ribosomal protein L53, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 12 kDa -
Name: 39S ribosomal protein L55, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 15 kDa -
Name: Ribosomal protein 63, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 12 kDa -
Name: Peptidyl-tRNA hydrolase ICT1, mitochondrial
EC number: 3.1.1.29
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 23 kDa -
Name: Growth arrest and DNA damage-inducible proteins-interacting protein 1
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 25 kDa -
Name: 39S ribosomal protein S18a, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 22 kDa -
Name: 39S ribosomal protein S30, mitochondrial
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 50 kDa -
Name: Mitochondrial assembly of ribosomal large subunit protein 1
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 26 kDa -
Name: MIEF1 upstream open reading frame protein
Number of copies: 1
UniProtKB PDBe-KB AlphaFold DB
Domains
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 8 kDa -
RNA [2]
Name: 16S ribosomal RNA
Number of copies: 1
Natural source
Organism: Human
Molecular weight
Experimental Theoretical Method
- 500 kDa -
Name: mitochondrial tRNAVal
Number of copies: 1
Natural source
Organism: human
Molecular weight
Experimental Theoretical Method
- 22 kDa -
Ligand [2]
Name: ZINC ION
HET code: ZN
Number of copies: 3
ChEMBL ChEBI DrugBank
Molecular weight
Experimental Theoretical Method
- 65 Da -
Name: MAGNESIUM ION
HET code: MG
Number of copies: 61
ChEBI DrugBank
Molecular weight
Experimental Theoretical Method
- 24 Da -