%0 Journal Article %A Gómez-González, Belén %A Barroso, Sonia %A Herrera-Moyano, Emilia %A Aguilera, Andrés %T Spontaneous DNA-RNA hybrids: differential impacts throughout the cell cycle. %D 2020 %U http://hdl.handle.net/10668/15116 %X A large body of research supports that transcription plays a major role among the many sources of replicative stress contributing to genome instability. It is therefore not surprising that the DNA damage response has a role in the prevention of transcription-induced threatening events such as the formation of DNA-RNA hybrids, as we have recently found through an siRNA screening. Three major DDR pathways were defined to participate in the protection against DNA-RNA hybrids: ATM/CHK2, ATR/CHK1 and Postreplication Repair (PRR). Based on these observations, we envision different scenarios of DNA-RNA hybridization and their consequent DNA damage. %K DNA damage response %K DNA-RNA hybrids %K genetic instability %K postreplication repair %K replicative stress %~