05 · Translation
The ribosome reads the message
In the cytoplasm, ribosomes translate the mRNA into protein. The small subunit holds the mRNA and matches each three-letter codon with the anticodon of a transfer RNA (tRNA), which carries the matching amino acid. The large subunit joins the amino acids into a chain, a reaction carried out by the ribosome's RNA rather than its proteins.
This human 80S ribosome was frozen after a new tRNA had been accepted and before the ribosome moved on to the next codon. Two tRNAs sit side by side, each paired with its codon on the mRNA.
It is a test-tube complex, not one taken from a working cell. The message is a synthetic run of U (UUU codons, read as phenylalanine), and the tRNAs are modelled with the sequence of a bacterial tRNA for phenylalanine. The drug cycloheximide, bound in the large subunit, holds the ribosome in this state by blocking the move to the next codon.
What you are looking at
- Two tRNAs, in the A site, which receives each new amino acid, and the P site, which holds the growing chain.
- The synthetic poly(U) mRNA: 17 nucleotides are resolved, running through the small subunit.
- Ribosomal RNA: four molecules, about 5,600 nucleotides in this model. RNA, not protein, forms the bonds between amino acids.
- 75 protein chains, cut away in front, with the RNA, to show the tRNAs inside.
- A two-residue stub of the new chain, where the two tRNAs meet.
- Cycloheximide, the drug that holds the ribosome in this state, bound in the large subunit.
- Structure
- Human 80S ribosome with A-site and P-site tRNAs. PDB 6Y0G (opens the RCSB PDB in a new tab)
- Method
- Cryo-EM, 3.2 Å, released 2020
- Size
- About 32 nm across. Human ribosome on a synthetic poly(U) message, held by cycloheximide.
- Paper
- Bhaskar V, Graff-Meyer A, Schenk AD, et al. (2020). Dynamics of uS19 C-Terminal Tail during the Translation Elongation Cycle in Human Ribosomes. Cell Rep 31:107473. doi:10.1016/j.celrep.2020.03.037
- Chromatin12 nm
- Transcription17 nm
- Splicing36 nm
- Export45 nm
- Translation32 nm
- Exit tunnel32 nm
- Folding17 nm
- At work7 nm
Sizes are in nanometres; 1 nm is a millionth of a millimetre. The eight structures come from separate experiments published between 2006 and 2025, so they show the stages of making a protein, not one molecule passing through them. All the proteins are human. The RNA being spliced in step 3 is listed as coming from an adenovirus, and in step 5 the message is synthetic and the tRNAs have a bacterial sequence.
