Summary information and primary citation
- PDB-id
-
1sz1;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- transferase-RNA
- Method
- X-ray (6.21 Å)
- Summary
- Mechanism of cca-adding enzymes specificity revealed by
crystal structures of ternary complexes
- Reference
-
Xiong Y, Steitz TA (2004): "Mechanism
of transfer RNA maturation by CCA-adding enzyme without
using an oligonucleotide template." Nature,
430, 640-645. doi: 10.1038/nature02711.
- Abstract
- Transfer RNA nucleotidyltransferases (CCA-adding
enzymes) are responsible for the maturation or repair of
the functional 3' end of tRNAs by means of the addition of
the essential nucleotides CCA. However, it is unclear how
tRNA nucleotidyltransferases polymerize CCA onto the 3'
terminus of immature tRNAs without using a nucleic acid
template. Here we describe the crystal structure of the
Archaeoglobus fulgidus tRNA nucleotidyltransferase in
complex with tRNA. We also present ternary complexes of
this enzyme with both RNA duplex mimics of the tRNA
acceptor stem that terminate with the nucleotides C74 or
C75, as well as the appropriate incoming nucleoside
5'-triphosphates. A single nucleotide-binding pocket exists
whose specificity for both CTP and ATP is determined by the
protein side chain of Arg 224 and backbone phosphates of
the tRNA, which are non-complementary to and thus exclude
UTP and GTP. Discrimination between CTP or ATP at a given
addition step and at termination arises from changes in the
size and shape of the nucleotide binding site that is
progressively altered by the elongating 3' end of the
tRNA.