Ubiquitinated Fancd2 recruits Fan1 to stalled replication forks to prevent genome instability

Lachaud, C., Moreno, A., Marchesi, F. , Toth, R., Blow, J. J. and Rouse, J. (2016) Ubiquitinated Fancd2 recruits Fan1 to stalled replication forks to prevent genome instability. Science, 351(6275), pp. 846-849. (doi: 10.1126/science.aad5634) (PMID:26797144)

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Abstract

Mono-ubiquitination of Fancd2 is essential for repairing DNA interstrand cross-links (ICLs), but the underlying mechanisms are unclear. The Fan1 nuclease, also required for ICL repair, is recruited to ICLs by ubiquitinated (Ub) Fancd2. This could in principle explain how Ub-Fancd2 promotes ICL repair, but we show that recruitment of Fan1 by Ub-Fancd2 is dispensable for ICL repair. Instead, Fan1 recruitment—and activity—restrains DNA replication fork progression and prevents chromosome abnormalities from occurring when DNA replication forks stall, even in the absence of ICLs. Accordingly, Fan1 nuclease-defective knockin mice are cancer-prone. Moreover, we show that a Fan1 variant in high-risk pancreatic cancers abolishes recruitment by Ub-Fancd2 and causes genetic instability without affecting ICL repair. Therefore, Fan1 recruitment enables processing of stalled forks that is essential for genome stability and health.

Item Type:Articles
Status:Published
Refereed:Yes
Glasgow Author(s) Enlighten ID:Marchesi, Dr Francesco
Authors: Lachaud, C., Moreno, A., Marchesi, F., Toth, R., Blow, J. J., and Rouse, J.
College/School:College of Medical Veterinary and Life Sciences > School of Biodiversity, One Health & Veterinary Medicine
Journal Name:Science
Publisher:American Association for the Advancement of Science
ISSN:0036-8075

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