Summary information and primary citation
- PDB-id
-
8eyq;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- ribosome
- Method
- cryo-EM (3.3 Å)
- Summary
- 30s_delta_ksga_h44_inactive_conformation
- Reference
-
Sun J, Kinman LF, Jahagirdar D, Ortega J, Davis JH
(2023): "KsgA
facilitates ribosomal small subunit maturation by
proofreading a key structural lesion."
Nat.Struct.Mol.Biol., 30,
1468-1480. doi: 10.1038/s41594-023-01078-5.
- Abstract
- Ribosome assembly is orchestrated by many assembly
factors, including ribosomal RNA methyltransferases, whose
precise role is poorly understood. Here, we leverage the
power of cryo-EM and machine learning to discover that the
E. coli methyltransferase KsgA performs a 'proofreading'
function in the assembly of the small ribosomal subunit by
recognizing and partially disassembling particles that have
matured but are not competent for translation. We propose
that this activity allows inactive particles an opportunity
to reassemble into an active state, thereby increasing
overall assembly fidelity. Detailed structural
quantifications in our datasets additionally enabled the
expansion of the Nomura assembly map to highlight rRNA
helix and r-protein interdependencies, detailing how the
binding and docking of these elements are tightly coupled.
These results have wide-ranging implications for our
understanding of the quality-control mechanisms governing
ribosome biogenesis and showcase the power of heterogeneity
analysis in cryo-EM to unveil functionally relevant
information in biological systems.