8UNK image
Entry Detail
PDB ID:
8UNK
EMDB ID:
Title:
Structure of the KEOPS complex (Cgi121/Bud32/Kae1/Pcc1)
Biological Source:
PDB Version:
Deposition Date:
2023-10-19
Release Date:
2024-12-18
Method Details:
Experimental Method:
Resolution:
2.91 Å
Aggregation State:
PARTICLE
Reconstruction Method:
SINGLE PARTICLE
Macromolecular Entities
Polymer Type:polypeptide(L)
Description:Probable bifunctional tRNA threonylcarbamoyladenosine biosynthesis protein
Mutations:E148R
Chain IDs:A (auth: B)
Chain Length:203
Number of Molecules:1
Biological Source:Methanocaldococcus jannaschii
Polymer Type:polypeptide(L)
Description:Regulatory protein Cgi121
Chain IDs:B (auth: C)
Chain Length:146
Number of Molecules:1
Biological Source:Methanocaldococcus jannaschii
Polymer Type:polypeptide(L)
Description:Probable bifunctional tRNA threonylcarbamoyladenosine biosynthesis protein
Chain IDs:C (auth: K)
Chain Length:324
Number of Molecules:1
Biological Source:Methanocaldococcus jannaschii
Polymer Type:polypeptide(L)
Description:KEOPS complex Pcc1-like subunit
Chain IDs:D (auth: P)
Chain Length:82
Number of Molecules:1
Biological Source:Pyrococcus furiosus
Ligand Molecules
Primary Citation
Structures of KEOPS bound to tRNA reveal functional roles of the kinase Bud32.
Nat Commun 15 10633 10633 (2024)
PMID: 39639027 DOI: 10.1038/s41467-024-54787-w

Abstact

The enzyme complex KEOPS (Kinase, Endopeptidase and Other Proteins of Small size) installs the universally conserved and essential N6-threonylcarbamoyl adenosine modification (t6A) on ANN-decoding tRNAs in eukaryotes and in archaea. KEOPS consists of Cgi121, Kae1, Pcc1, Gon7 and the atypical kinase/ATPase Bud32. Except Gon7, all KEOPS subunits are needed for tRNA modification, and in humans, mutations in all five genes underlie the lethal genetic disease Galloway Mowat Syndrome (GAMOS). Kae1 catalyzes the modification of tRNA, but the specific contributions of Bud32 and the other subunits are less clear. Here we solved cryogenic electron microscopy structures of KEOPS with and without a tRNA substrate. We uncover distinct flexibility of KEOPS-bound tRNA revealing a conformational change that may enable its modification by Kae1. We further identified a contact between a flipped-out base of the tRNA and an arginine residue in C-terminal tail of Bud32 that correlates with the conformational change in the tRNA. We also uncover contact surfaces within the KEOPS-tRNA holo-enzyme substrate complex that are required for Bud32 ATPase regulation and t6A modification activity. Our findings uncover inner workings of KEOPS including a basis for substrate specificity and why Kae1 depends on all other subunits.

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Primary Citation of related structures