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Functional annotation and investigation of the 10q24.33 melanoma risk locus identifies a common variant that influences transcriptional regulation of OBFC1

Authors :
Massimiliano Scalvenzi
Alessandro Testori
Michiel Vermeulen
Annalaura Montella
Nicola Zambrano
Marijke P. Baltissen
Vito Alessandro Lasorsa
Marianna Avitabile
Kevin M. Brown
Sueva Cantalupo
Flora Cimmino
Antonella Cardinale
Mai Xu
Mark M. Iles
Achille Iolascon
Paola Ghiorzo
Fabrizio Ayala
Ferdinando Bonfiglio
Mariangela Succoio
Matthew Law
Daniela Formicola
Matteo Esposito
Mario Capasso
Cardinale, Antonella
Cantalupo, Sueva
Lasorsa, Vito Alessandro
Montella, Annalaura
Cimmino, Flora
Succoio, Mariangela
Vermeulen, Michiel
Baltissen, Marijke P
Esposito, Matteo
Avitabile, Marianna
Formicola, Daniela
Testori, Alessandro
Bonfiglio, Ferdinando
Ghiorzo, Paola
Scalvenzi, Massimiliano
Ayla, Fabrizio
Zambrano, Nicola
Iles, Mark M
Xu, Mai
Law, Matthew H
Brown, Kevin M
Iolascon, Achille
Capasso, Mario
Source :
Human Molecular Genetics, 31, 863-874, Hum Mol Genet, Human Molecular Genetics, 31, 6, pp. 863-874
Publication Year :
2022

Abstract

The 10q24.33 locus is known to be associated with susceptibility to cutaneous malignant melanoma (CMM), but the mechanisms underlying this association have been not extensively investigated. We carried out an integrative genomic analysis of 10q24.33 using epigenomic annotations and in vitro reporter gene assays to identify regulatory variants. We found two putative functional single nucleotide polymorphisms (SNPs) in an enhancer and in the promoter of OBFC1, respectively, in neural crest and CMM cells, one, rs2995264, altering enhancer activity. The minor allele G of rs2995264 correlated with lower OBFC1 expression in 470 CMM tumors and was confirmed to increase the CMM risk in a cohort of 484 CMM cases and 1801 controls of Italian origin. Hi-C and chromosome conformation capture (3C) experiments showed the interaction between the enhancer-SNP region and the promoter of OBFC1 and an isogenic model characterized by CRISPR-Cas9 deletion of the enhancer-SNP region confirmed the potential regulatory effect of rs2995264 on OBFC1 transcription. Moreover, the presence of G-rs2995264 risk allele reduced the binding affinity of the transcription factor MEOX2. Biologic investigations showed significant cell viability upon depletion of OBFC1, specifically in CMM cells that were homozygous for the protective allele. Clinically, high levels of OBFC1 expression associated with histologically favorable CMM tumors. Finally, preliminary results suggested the potential effect of decreased OBFC1 expression on telomerase activity in tumorigenic conditions. Our results support the hypothesis that reduced expression of OBFC1 gene through functional heritable DNA variation can contribute to malignant transformation of normal melanocytes.

Details

ISSN :
09646906
Database :
OpenAIRE
Journal :
Human Molecular Genetics, 31, 863-874, Hum Mol Genet, Human Molecular Genetics, 31, 6, pp. 863-874
Accession number :
edsair.doi.dedup.....2fdb5f2d344407fe0b72d1c0a3be378e