A clickable melphalan for monitoring DNA interstrand crosslink accumulation and detecting ICL repair defects in Fanconi anemia patient cells

Author:

Berrada Sara1,Martínez-Balsalobre Elena1ORCID,Larcher Lise23,Azzoni Violette1,Vasquez Nadia23,Da Costa Mélanie23,Abel Sébastien1,Audoly Gilles1,Lee Lara1,Montersino Camille1,Castellano Rémy1,Combes Sébastien1,Gelot Camille4,Ceccaldi Raphaël4,Guervilly Jean-Hugues1ORCID,Soulier Jean23,Lachaud Christophe1ORCID

Affiliation:

1. Aix-Marseille Univ, INSERM, CNRS, Institut Paoli-Calmettes , CRCM, Marseille , France

2. University Paris Cité, Institut de Recherche Saint-Louis , INSERM U944, and CNRS UMR7212, Paris , France

3. Laboratoire de biologie médicale de référence (LBMR) “Aplastic anemia” , Service d’Hématologie biologique, Hôpital Saint-Louis, Assistance Publique Hôpitaux de Paris, Paris, France

4. Inserm U830, PSL Research University, Institut Curie , Paris , France

Abstract

AbstractFanconi anemia (FA) is a genetic disorder associated with developmental defects, bone marrow failure and cancer. The FA pathway is crucial for the repair of DNA interstrand crosslinks (ICLs). In this study, we have developed and characterized a new tool to investigate ICL repair: a clickable version of the crosslinking agent melphalan which we name click-melphalan. Our results demonstrate that click-melphalan is as effective as its unmodified counterpart in generating ICLs and associated toxicity. The lesions induced by click-melphalan can be detected in cells by post-labelling with a fluorescent reporter and quantified using flow cytometry. Since click-melphalan induces both ICLs and monoadducts, we generated click-mono-melphalan, which only induces monoadducts, in order to distinguish between the two types of DNA repair. By using both molecules, we show that FANCD2 knock-out cells are deficient in removing click-melphalan-induced lesions. We also found that these cells display a delay in repairing click-mono-melphalan-induced monoadducts. Our data further revealed that the presence of unrepaired ICLs inhibits monoadduct repair. Finally, our study demonstrates that these clickable molecules can differentiate intrinsic DNA repair deficiencies in primary FA patient cells from those in primary xeroderma pigmentosum patient cells. As such, these molecules may have potential for developing diagnostic tests.

Funder

ANR

ATIP AVENIR

Canceropôle Provence Alpes Côte d’Azur, Institut National du Cancer and Région Sud

Institut Carnot OPALE and NextGenerationEU

Saint-Louis Hospital

Centre de Référence Maladie Rares ‘Aplastic anemia’

Publisher

Oxford University Press (OUP)

Subject

Genetics

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