Summary for 9S72
| Entry DOI | 10.2210/pdb9s72/pdb |
| EMDB information | 54634 |
| Descriptor | T-complex protein 1 subunit alpha, MAGNESIUM ION, ALUMINUM FLUORIDE, ... (12 entities in total) |
| Functional Keywords | chaperonins, cryoelectron microscopy, closed conformation, chaperone |
| Biological source | Homo sapiens (human) More |
| Total number of polymer chains | 16 |
| Total formula weight | 955740.90 |
| Authors | |
| Primary citation | Gutierrez-Seijo, J.,Cuervo, A.,Pipaon, S.,Gil-Cantero, D.,Majano, C.,Santiago, C.,Valpuesta, J.M.,Cuellar, J. CryoEM Strategies for Elucidating the Closed State Architecture of CCT. Methods Mol.Biol., 3070:263-282, 2026 Cited by PubMed Abstract: Cryo-electron microscopy (CryoEM) has emerged as a state-of-the-art technique in structural biology, thanks to advances in sample preparation, high-voltage electron microscopy, direct electron detectors, and sophisticated image processing software. In this study, we investigate the eukaryotic chaperonin CCT, a ~1 MDa hetero-oligomeric complex essential for the folding of key substrates such as actin, tubulin, and WD40 family members. While several open-state structures of CCT have been resolved, the highest-resolution reconstructions have been obtained in the closed state. This is primarily due to the increased structural rigidity of the complex when its apical domains become immobilized in this conformation. However, the pseudo-symmetric arrangement of subunits in the closed state poses challenges for subunit identification. Here, we present a workflow for obtaining a high-resolution CryoEM structure of closed CCT, achieved without the use of nanobodies, substrates, or any tools designed to increase CCT asymmetry. Our results demonstrate that subunit assignment and atomic modeling are achievable by exploiting subunit-intrinsic structural features alone. PubMed: 42681018DOI: 10.1007/978-1-0716-5515-3_15 PDB entries with the same primary citation |
| Experimental method | ELECTRON MICROSCOPY (2.71 Å) |
Structure validation
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