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Tella, A.

Publications and source records attributed to Tella, A..

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PCNA-K164 ubiquitination facilitates origin licensing and mitotic DNA synthesis

Ubiquitination of the replication clamp proliferating cell nuclear antigen (PCNA) at the conserved residue lysine 164 (K164) occurs during normal S phase progression and increases after DNA damage induced replication stress. PCNA-K164 ubiquitination is critical for Okazaki fragment maturation and the activation of DNA damage tolerance pathways. Moreover, ubiquitinated PCNA operates in a fork protection pathway parallel to BRCA-RAD51. Whether PCNA ubiquitination regulates other genome maintenance mechanisms is unclear. Utilizing PCNAK164R cells generated by CRISPR-Cas9, we demonstrate that this mutation causes DNA replication defects that impact origin activation. PCNAK164R cells accumulate single-stranded DNA gaps during replication that persist throughout mitosis due to compromised mitotic DNA synthesis (MiDAS). We uncover a novel role for PCNA-K164 ubiquitination in regulating FANCD2 to initiate MiDAS. Persistent gaps hence interfere with MCM2-7 double hexamer loading in the subsequent G1 phase. Our findings demonstrate that the impact of PCNAK164-Ub is not limited to S/G2 phases but extends to mitosis and G1 phase. SUMMARYPCNA-K164 ubiquitination promotes DNA gap filling during S/G2 phases of the cell cycle. This study identifies a novel role for K164 ubiquitination in replication dynamics and mitotic DNA synthesis and thus provides new insight into the players involved in counteracting under-replication.

molecular biology