6TNN: Mini-RNase III (Mini-III) bound to 50S ribosome with precursor 23S rRNA

PDB ID: 6TNNDownload
MMDB ID: 193415
PDB Deposition Date: 2019/12/9
Updated in MMDB: 2022/11
Experimental Method:
electron microscopy
Resolution: 3.07  Å
Source Organism:
Similar Structures:
Biological Unit for 6TNN: 31-meric; determined by author
Molecular Components in 6TNN
Label Count Molecule
Proteins (29 molecules)
1
50S Ribosomal Protein L10
Molecule annotation
2
Mini-ribonuclease 3
(Gene symbol: mrnC)
Molecule annotation
1
50S Ribosomal Protein L2
Molecule annotation
1
50S Ribosomal Protein L3
Molecule annotation
1
50S Ribosomal Protein L4
Molecule annotation
1
50S Ribosomal Protein L5
Molecule annotation
1
50S Ribosomal Protein L6
Molecule annotation
1
50S Ribosomal Protein L13
Molecule annotation
1
50S Ribosomal Protein L14
Molecule annotation
1
50S Ribosomal Protein L15
Molecule annotation
1
50S Ribosomal Protein L16
Molecule annotation
1
50S Ribosomal Protein L17
Molecule annotation
1
50S Ribosomal Protein L18
Molecule annotation
1
50S Ribosomal Protein L19
Molecule annotation
1
50S Ribosomal Protein L20
Molecule annotation
1
50S Ribosomal Protein L21
Molecule annotation
1
50S Ribosomal Protein L22
Molecule annotation
1
50S Ribosomal Protein L23
Molecule annotation
1
50S Ribosomal Protein L24
Molecule annotation
1
50S Ribosomal Protein L27
Molecule annotation
1
50S Ribosomal Protein L32
Molecule annotation
1
50S Ribosomal Protein L33 1
Molecule annotation
1
50S Ribosomal Protein L34
Molecule annotation
1
50S Ribosomal Protein L35
Molecule annotation
1
50S Ribosomal Protein L36
Molecule annotation
1
50S Ribosomal Protein L28
Molecule annotation
1
50S Ribosomal Protein L29
Molecule annotation
1
50S Ribosomal Protein L30
Molecule annotation
Nucleotides(2 molecules)
1
Pre-23s rRNA
Molecule annotation
1
5S rRNA
Molecule annotation
Chemicals and Non-standard biopolymers (224 molecules)
221
MAGNESIUM ION (Link to PubChem not yet available)MAGNESIUM ION
3
ZINC ION (Link to PubChem not yet available)ZINC ION
* Click molecule labels to explore molecular sequence information.

Citing MMDB