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dc.contributor.authorIglesias, P.*
dc.contributor.authorSeoane, M.*
dc.contributor.authorGolán-Cancela, I.*
dc.contributor.authorFraga, M.*
dc.contributor.authorArce, V.M.*
dc.contributor.authorCostoya Puente, José Antonio*
dc.date.accessioned2025-09-05T08:20:57Z
dc.date.available2025-09-05T08:20:57Z
dc.date.issued2023
dc.identifier.citationIglesias P, Seoane M, Golán-Cancela I, Fraga M, Arce VM, Costoya JA. A New Opportunity for "Old" Molecules: Targeting PARP1 Activity through a Non-Enzymatic Mechanism. International Journal of Molecular Sciences. 2023;24(10).
dc.identifier.issn1422-0067
dc.identifier.otherhttps://portalcientifico.sergas.gal//documentos/64860189a219857f1d78b72b
dc.identifier.urihttp://hdl.handle.net/20.500.11940/20990
dc.description.abstractIn recent years, new therapies have been developed based on molecules that target molecular mechanisms involved in both the initiation and maintenance of the oncogenic process. Among these molecules are the poly(ADP-ribose) polymerase 1 (PARP1) inhibitors. PARP1 has emerged as a target with great therapeutic potential for some tumor types, drawing attention to this enzyme and resulting in many small molecule inhibitors of its enzymatic activity. Therefore, many PARP inhibitors are currently in clinical trials for the treatment of homologous recombination (HR)-deficient tumors, BRCA-related cancers, taking advantage of synthetic lethality. In addition, several novel cellular functions unrelated to its role in DNA repair have been described, including post-translational modification of transcription factors, or acting through protein-protein interactions as a co-activator or co-repressor of transcription. Previously, we reported that this enzyme may play a key role as a transcriptional co-activator of an important component of cell cycle regulation, the transcription factor E2F1. Here, we show that PARP inhibitors, which interfere with its activity in cell cycle regulation, perform this without affecting its enzymatic function.
dc.description.sponsorshipThis work received financial support from the Ministerio de Ciencia e Innovacion (PID2020-113501RB-I00; J.A.C.), the Conselleria de Cultura, Educacion e Ordenacion Universitaria (GPC GI-1862, ED431B 2020/26; J.A.C. and V.M.A.). In addition, this work received financial support from the Xunta de Galicia (Centro de investigacion de Galicia accreditation 2019-2022; ED431G 2019/02) and the European Union (European Regional Development Fund-ERDF).
dc.languageeng
dc.rightsAttribution 4.0 International (CC BY 4.0)*
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/*
dc.subject.meshHumans *
dc.subject.meshPoly(ADP-ribose) Polymerases *
dc.subject.meshPoly(ADP-ribose) Polymerase Inhibitors *
dc.subject.meshPoly (ADP-Ribose) Polymerase-1 *
dc.subject.meshNeoplasms *
dc.subject.meshDNA Repair *
dc.subject.meshTranscription Factors *
dc.titleA New Opportunity for "Old" Molecules: Targeting PARP1 Activity through a Non-Enzymatic Mechanism
dc.typeArtigo
dc.authorsophosIglesias, P.; Seoane, M.; Golán-Cancela, I.; Fraga, M.; Arce, V.M.; Costoya, J.A.
dc.identifier.doi10.3390/ijms24108849
dc.identifier.sophos64860189a219857f1d78b72b
dc.issue.number10
dc.journal.titleInternational Journal of Molecular Sciences*
dc.organizationInstituto de Investigación Sanitaria de Santiago de Compostela (IDIS)
dc.relation.projectIDMinisterio de Ciencia e Innovacion [PID2020-113501RB-I00]
dc.relation.projectIDConselleria de Cultura, Educacion e Ordenacion Universitaria [GPC GI-1862, ED431B 2020/26]
dc.relation.projectIDXunta de Galicia (Centro de investigacion de Galicia accreditation 2019-2022) [ED431G 2019/02]
dc.relation.projectIDEuropean Union (European Regional Development Fund-ERDF)
dc.relation.publisherversionhttps://doi.org/10.3390/ijms24108849
dc.rights.accessRightsopenAccess*
dc.subject.keywordIDIS
dc.typefidesArtículo Científico (incluye Original, Original breve, Revisión Sistemática y Meta-análisis)
dc.typesophosArtículo Original
dc.volume.number24


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Attribution 4.0 International (CC BY 4.0)
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