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Ribonucleotide incorporation by human DNA polymerase eta impacts translesion synthesis and RNase H2 activity

Academic Article
Publication Date:
2017
abstract:
Ribonucleotides (rNs) incorporated in the genome by DNA polymerases (Pols) are removed by RNase H2. Cytidine and guanosine preferentially accumulate over the other rNs. Here we show that human Pol ? can incorporate cytidine monophosphate (rCMP) opposite guanine, 8-oxo-7,8-dihydroguanine, 8-methyl-2'-deoxyguanosine and a cisplatin intrastrand guanine crosslink (cis-PtGG), while it cannot bypass a 3-methylcytidine or an abasic site with rNs as substrates. Pol eta is also capable of synthesizing polyribonucleotide chains, and its activity is enhanced by its auxiliary factor DNA Pol delta interacting protein 2 (PolDIP2). Human RNase H2 removes cytidine and guanosine less efficiently than the other rNs and incorporation of rCMP opposite DNA lesions further reduces the efficiency of RNase H2. Experiments with XP-V cell extracts indicate Pol eta as the major basis of rCMP incorporation opposite cis-PtGG. These results suggest that translesion synthesis by Pol eta can contribute to the accumulation of rCMP in the genome, particularly opposite modified guanines.
Iris type:
01.01 Articolo in rivista
Keywords:
polymerase eta
List of contributors:
Maga, Giovanni; Crespan, Emmanuele; Sabbioneda, Simone
Authors of the University:
CRESPAN EMMANUELE
MAGA GIOVANNI
SABBIONEDA SIMONE
Handle:
https://iris.cnr.it/handle/20.500.14243/373560
Published in:
NUCLEIC ACIDS RESEARCH (ONLINE)
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