Human HelQ and DNA polymerase δ interact to halt DNA synthesis and stimulate DNA single-strand annealing
DNA strand breaks can be repaired by base-pairing with unbroken homologous DNA, forming a template for new DNA synthesis that patches over the break site. In eukaryotes multiple DNA break repair pathways utilize DNA polymerase {delta} (Pol {delta}) to synthesise new DNA from the available 3OH at the strand break. Here we show that DNA synthesis by human Pol {delta} is halted by the HelQ DNA repair protein directly targeting isolated Pol {delta} or Pol {delta} in complex with PCNA and RPA. The mechanism is independent of DNA binding by HelQ or Pol {delta}, maps to a region of HelQ that also modulates RPA, and requires multiple Pol {delta} subunits. Interaction of HelQ with the POLD3 subunit of Pol {delta} stimulated DNA single-strand annealing activity of HelQ. The data implicates HelQ in preventing genetic instability by restraining DNA synthesis in multiple DNA break repair pathways.