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UBQLN4 Represses Homologous Recombination and Is Overexpressed in Aggressive Tumors

Authors :
Adelson Medical Research Foundation
Israel Science Foundation
Israel Cancer Research Fund
German-Israeli Foundation for Scientific Research and Development
German Research Foundation
Else Kröner-Fresenius Foundation
Deutsche Krebshilfe
Federal Ministry of Education and Research (Germany)
Ministerio de Economía y Competitividad (España)
Jachimowicz, Ron D.
Beleggia, Filippo
Isensee, Jörg
Velpula, Bhagya Bhavana
Goergens, Jonas
Bustos, Matias A.
Doll, Markus A.
Shenoy, Anjana
Checa-Rodríguez, Cintia
Wiederstein, Janica Lea
Baranes-Bachar, Keren
Bartenhagen, Christoph
Hertwig, Falk
Teper, Nizan
Nishi, Tomohiko
Schmitt, Anna
Distelmaier, Felix
Lüdecke, Hermann-Josef
Albrecht, Beate
Krüger, Markus
Schumacher, Björn
Geiger, Tamar
Hoon, Dave S.B.
Huertas Sánchez, Pablo
Fischer, Matthias
Hucho, Tim
Peifer, Martin
Ziv, Yael
Reinhardt, H. Christian
Wieczorek, Dagmar
Shiloh, Yosef
Adelson Medical Research Foundation
Israel Science Foundation
Israel Cancer Research Fund
German-Israeli Foundation for Scientific Research and Development
German Research Foundation
Else Kröner-Fresenius Foundation
Deutsche Krebshilfe
Federal Ministry of Education and Research (Germany)
Ministerio de Economía y Competitividad (España)
Jachimowicz, Ron D.
Beleggia, Filippo
Isensee, Jörg
Velpula, Bhagya Bhavana
Goergens, Jonas
Bustos, Matias A.
Doll, Markus A.
Shenoy, Anjana
Checa-Rodríguez, Cintia
Wiederstein, Janica Lea
Baranes-Bachar, Keren
Bartenhagen, Christoph
Hertwig, Falk
Teper, Nizan
Nishi, Tomohiko
Schmitt, Anna
Distelmaier, Felix
Lüdecke, Hermann-Josef
Albrecht, Beate
Krüger, Markus
Schumacher, Björn
Geiger, Tamar
Hoon, Dave S.B.
Huertas Sánchez, Pablo
Fischer, Matthias
Hucho, Tim
Peifer, Martin
Ziv, Yael
Reinhardt, H. Christian
Wieczorek, Dagmar
Shiloh, Yosef
Publication Year :
2019

Abstract

Genomic instability can be a hallmark of both human genetic disease and cancer. We identify a deleterious UBQLN4 mutation in families with an autosomal recessive syndrome reminiscent of genome instability disorders. UBQLN4 deficiency leads to increased sensitivity to genotoxic stress and delayed DNA double-strand break (DSB) repair. The proteasomal shuttle factor UBQLN4 is phosphorylated by ATM and interacts with ubiquitylated MRE11 to mediate early steps of homologous recombination-mediated DSB repair (HRR). Loss of UBQLN4 leads to chromatin retention of MRE11, promoting non-physiological HRR activity in vitro and in vivo. Conversely, UBQLN4 overexpression represses HRR and favors non-homologous end joining. Moreover, we find UBQLN4 overexpressed in aggressive tumors. In line with an HRR defect in these tumors, UBQLN4 overexpression is associated with PARP1 inhibitor sensitivity. UBQLN4 therefore curtails HRR activity through removal of MRE11 from damaged chromatin and thus offers a therapeutic window for PARP1 inhibitor treatment in UBQLN4-overexpressing tumors.Control of MRE11 association with chromatin by UBQLN4 during double-strand break repair influences repair pathway choice and can be dysregulated in tumorigenesis.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1286539214
Document Type :
Electronic Resource