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Article Dans Une Revue PLoS ONE Année : 2012

Virtual screening and biological evaluation of inhibitors targeting the XPA-ERCC1 interaction.

Résumé

BACKGROUND: Nucleotide excision repair (NER) removes many types of DNA lesions including those induced by UV radiation and platinum-based therapy. Resistance to platinum-based therapy correlates with high expression of ERCC1, a major element of the NER machinery. The interaction between ERCC1 and XPA is essential for a successful NER function. Therefore, one way to regulate NER is by inhibiting the activity of ERCC1 and XPA. METHODOLOGY/PRINCIPAL FINDINGS: Here we continued our earlier efforts aimed at the identification and characterization of novel inhibitors of the ERCC1-XPA interaction. We used a refined virtual screening approach combined with a biochemical and biological evaluation of the compounds for their ability to interact with ERCC1 and to sensitize cells to UV radiation. Our findings reveal a new validated ERCC1-XPA inhibitor that significantly sensitized colon cancer cells to UV radiation indicating a strong inhibition of the ERCC1-XPA interaction. CONCLUSIONS: NER is a major factor in acquiring resistance to platinum-based therapy. Regulating the NER pathway has the potential of improving the efficacy of platinum treatments. One approach that we followed is to inhibit the essential interaction between the two NER elements, ERCC1 and XPA. Here, we performed virtual screening against the ERCC1-XPA interaction and identified novel inhibitors that block the XPA-ERCC1 binding. The identified inhibitors significantly sensitized colon cancer cells to UV radiation indicating a strong inhibition of the ERCC1-XPA interaction.

Domaines

Cancer

Dates et versions

hal-00853978 , version 1 (26-08-2013)

Identifiants

Citer

Khaled H Barakat, Lars P Jordheim, Rolando Perez-Pineiro, David Wishart, Charles Dumontet, et al.. Virtual screening and biological evaluation of inhibitors targeting the XPA-ERCC1 interaction.. PLoS ONE, 2012, 7 (12), pp.e51329. ⟨10.1371/journal.pone.0051329⟩. ⟨hal-00853978⟩
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