Summary information and primary citation
- PDB-id
-
1y39;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- structural protein-RNA
- Method
- X-ray (2.8 Å)
- Summary
- Co-evolution of protein and RNA structures within a
highly conserved ribosomal domain
- Reference
-
Dunstan MS, Guhathakurta D, Draper DE, Conn GL (2005):
"Coevolution
of Protein and RNA Structures within a Highly Conserved
Ribosomal Domain." Chem.Biol.,
12, 201-206. doi: 10.1016/j.chembiol.2004.11.019.
- Abstract
- The X-ray crystal structure of a ribosomal L11-rRNA
complex with chloroplast-like mutations in both protein and
rRNA is presented. The global structure is almost identical
to that of the wild-type (bacterial) complex, with only a
small movement of the protein alpha helix away from the
surface of the RNA required to accommodate the altered
protein residue. In contrast, the specific hydrogen bonding
pattern of the mutated residues is substantially different,
and now includes a direct interaction between the protein
side chain and an RNA base edge and a water-mediated
contact. Comparison of the two structures allows the
observations of sequence variation and relative affinities
of wild-type and mutant complexes to be clearly
rationalized, but reinforces the concept that there is no
single simple code for protein-RNA recognition.