SLX4–XPF mediates DNA damage responses to replication stress induced by DNA–protein interactions

Author:

Ishimoto Riko1,Tsuzuki Yota1,Matsumura Tomoki1,Kurashige Seiichiro1,Enokitani Kouki1ORCID,Narimatsu Koki1,Higa Mitsunori1,Sugimoto Nozomi1,Yoshida Kazumasa1ORCID,Fujita Masatoshi1ORCID

Affiliation:

1. Department of Cellular Biochemistry, Graduate School of Pharmaceutical Sciences, Kyushu University, Fukuoka, Japan

Abstract

The DNA damage response (DDR) has a critical role in the maintenance of genomic integrity during chromosome replication. However, responses to replication stress evoked by tight DNA–protein complexes have not been fully elucidated. Here, we used bacterial LacI protein binding to lacO arrays to make site-specific replication fork barriers on the human chromosome. These barriers induced the accumulation of single-stranded DNA (ssDNA) and various DDR proteins at the lacO site. SLX4–XPF functioned as an upstream factor for the accumulation of DDR proteins, and consequently, ATR and FANCD2 were interdependently recruited. Moreover, LacI binding in S phase caused underreplication and abnormal mitotic segregation of the lacO arrays. Finally, we show that the SLX4–ATR axis represses the anaphase abnormality induced by LacI binding. Our results outline a long-term process by which human cells manage nucleoprotein obstacles ahead of the replication fork to prevent chromosomal instability.

Funder

Japan Society for the Promotion of Science

Fukuoka Foundation for Sound Health

Mochida Memorial Foundation for Medical and Pharmaceutical Research

Publisher

Rockefeller University Press

Subject

Cell Biology

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