Saltar al contenido
MilliporeSigma

Structure and specificity of the vertebrate anti-mutator uracil-DNA glycosylase SMUG1.

Molecular cell (2003-06-25)
Jane E A Wibley, Timothy R Waters, Karl Haushalter, Gregory L Verdine, Laurence H Pearl
RESUMEN

Cytosine deamination is a major promutagenic process, generating G:U mismatches that can cause transition mutations if not repaired. Uracil is also introduced into DNA via nonmutagenic incorporation of dUTP during replication. In bacteria, uracil is excised by uracil-DNA glycosylases (UDG) related to E. coli UNG, and UNG homologs are found in mammals and viruses. Ung knockout mice display no increase in mutation frequency due to a second UDG activity, SMUG1, which is specialized for antimutational uracil excision in mammalian cells. Remarkably, SMUG1 also excises the oxidation-damage product 5-hydroxymethyluracil (HmU), but like UNG is inactive against thymine (5-methyluracil), a chemical substructure of HmU. We have solved the crystal structure of SMUG1 complexed with DNA and base-excision products. This structure indicates a more invasive interaction with dsDNA than observed with other UDGs and reveals an elegant water displacement/replacement mechanism that allows SMUG1 to exclude thymine from its active site while accepting HmU.

MATERIALES
Referencia del producto
Marca
Descripción del producto

Sigma-Aldrich
5-(Hydroxymethyl)uracil, 97%