Title : Recognition and processing of cisplatin- and oxaliplatin-DNA adducts.

Pub. Date : 2005 Jan

PMID : 15607931






2 Functional Relationships(s)
Download
Sentence
Compound Name
Protein Name
Organism
1 A detailed kinetic analysis of the insertion and extension steps of dNTP incorporation in the vicinity of the adduct shows that both DNA polymerase beta (pol beta) and DNA polymerase eta (pol eta) catalyze translesion synthesis past oxaliplatin-GG adducts with greater efficiency than past cisplatin-GG adducts. Oxaliplatin DNA polymerase beta Homo sapiens
2 A detailed kinetic analysis of the insertion and extension steps of dNTP incorporation in the vicinity of the adduct shows that both DNA polymerase beta (pol beta) and DNA polymerase eta (pol eta) catalyze translesion synthesis past oxaliplatin-GG adducts with greater efficiency than past cisplatin-GG adducts. Oxaliplatin DNA polymerase beta Homo sapiens