07 · Folding
Folding inside a chaperonin
Most new chains fold into their working shape by themselves, but some need help. The chaperonin TRiC, also called CCT, is built from two stacked rings of eight different subunits. It closes a chamber around a chain so that it can fold, driven by ATP.
Tubulin, the building block of microtubules, is one of the proteins that need TRiC to fold. Researchers solved four structures of human β-tubulin folding inside TRiC. As folding goes on, more of the chain is ordered enough to model: 170, then 269, 351 and finally 439 of its 444 amino acids. This is the last of the four, and the model contains the TRiC ring that encloses the tubulin.
What you are looking at
- β-tubulin: 439 of its 444 amino acids are modelled, nearly the whole chain.
- One ring of TRiC: eight different subunits, CCT1 to CCT8. The front half is cut away.
- ADP with aluminium fluoride, bound in each subunit.
- Structure
- Human TRiC chaperonin with β-tubulin (folding intermediate IV). PDB 7TUB (opens the RCSB PDB in a new tab)
- Method
- Cryo-EM, 3.6 Å, released 2022
- Size
- About 17 nm across (one ring).
- Paper
- Gestaut D, Zhao Y, Park J, et al. (2022). Structural visualization of the tubulin folding pathway directed by human chaperonin TRiC/CCT. Cell 185:4770-4787.e20. doi:10.1016/j.cell.2022.11.014
- 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.
