Summary information and primary citation
- PDB-id
-
1fjx;
DSSR-derived features in text and
JSON formats; DNAproDB
- Class
- transferase-DNA
- Method
- X-ray (2.26 Å)
- Summary
- Structure of ternary complex of hhai methyltransferase
mutant (t250g) in complex with DNA and adohcy
- Reference
-
Vilkaitis G, Dong A, Weinhold E, Cheng X, Klimasauskas S
(2000): "Functional
roles of the conserved threonine 250 in the target
recognition domain of HhaI DNA methyltransferase."
J.Biol.Chem., 275, 38722-38730.
- Abstract
- DNA cytosine-5-methyltransferase HhaI recognizes the
GCGC sequence and flips the inner cytosine out of DNA helix
and into the catalytic site for methylation. The
5'-phosphate of the flipped out cytosine is in contact with
the conserved Thr-250 from the target recognition domain.
We have produced 12 mutants of Thr-250 and examined their
methylation potential in vivo. Six active mutants were
subjected to detailed biochemical and structural studies.
Mutants with similar or smaller side chains (Ser, Cys, and
Gly) are very similar to wild-type enzyme in terms of
steady-state kinetic parameters k(cat), K(m)(DNA),
K(m)(AdoMet). In contrast, the mutants with bulkier side
chains (Asn, Asp, and His) show increased K(m) values for
both substrates. Fluorescence titrations and stopped-flow
kinetic analysis of interactions with duplex
oligonucleotides containing 2-aminopurine at the target
base position indicate that the T250G mutation leads to a
more polar but less solvent-accessible position of the
flipped out target base. The x-ray structure of the ternary
M. HhaI(T250G).DNA.AdoHcy complex shows that the target
cytosine is locked in the catalytic center of enzyme. The
space created by the mutation is filled by water molecules
and the adjacent DNA backbone atoms dislocate slightly
toward the missing side chain. In aggregate, our results
suggest that the side chain of Thr-250 is involved in
constraining the conformation the DNA backbone and the
target base during its rotation into the catalytic site of
enzyme.