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  1. Pubblicazioni

Non-coding regions of nuclear-DNA-encoded mitochondrial genes and intergenic sequences are targeted by autoantibodies in breast cancer

Articolo
Data di Pubblicazione:
2022
Citazione:
Non-coding regions of nuclear-DNA-encoded mitochondrial genes and intergenic sequences are targeted by autoantibodies in breast cancer / Obaidat, Deya; Giordo, Roberta; Kleinbrink, Erica L.; Banisad, Emilia; Grossman, Lawrence I.; Arshad, Rooshan; Stark, Azadeh; Maroun, Marie-Claire; Lipovich, Leonard; Fernandez-Madrid, Félix. - In: FRONTIERS IN GENETICS. - ISSN 1664-8021. - 13:(2022). [10.3389/fgene.2022.970619]
Abstract:
Autoantibodies against mitochondrial-derived antigens play a key role in chronic tissue inflammation in autoimmune disorders and cancers. Here, we identify autoreactive nuclear genomic DNA (nDNA)-encoded mitochondrial gene products (GAPDH, PKM2, GSTP1, SPATA5, MFF, TSPOAP1, PHB2, COA4, and HAGH) recognized by breast cancer (BC) patients' sera as nonself, supporting a direct relationship of mitochondrial autoimmunity to breast carcinogenesis. Autoreactivity of multiple nDNA-encoded mitochondrial gene products was mapped to protein-coding regions, 3' untranslated regions (UTRs), as well as introns. In addition, autoantibodies in BC sera targeted intergenic sequences that may be parts of long non-coding RNA (lncRNA) genes, including LINC02381 and other putative lncRNA neighbors of the protein-coding genes ERCC4, CXCL13, SOX3, PCDH1, EDDM3B, and GRB2. Increasing evidence indicates that lncRNAs play a key role in carcinogenesis. Consistent with this, our findings suggest that lncRNAs, as well as mRNAs of nDNA-encoded mitochondrial genes, mechanistically contribute to BC progression. This work supports a new paradigm of breast carcinogenesis based on a globally dysfunctional genome with altered function of multiple mitochondrial and non-mitochondrial oncogenic pathways caused by the effects of autoreactivity-induced dysregulation of multiple genes and their products. This autoimmunity-based model of carcinogenesis will open novel avenues for BC treatment.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
breast cancer; mitochondria; autoimmunity; long non-coding RNA; carcinogenesis; phage display
Elenco autori:
Obaidat, Deya; Giordo, Roberta; Kleinbrink, Erica L.; Banisad, Emilia; Grossman, Lawrence I.; Arshad, Rooshan; Stark, Azadeh; Maroun, Marie-Claire; Lipovich, Leonard; Fernandez-Madrid, Félix
Autori di Ateneo:
GIORDO Roberta
Link alla scheda completa:
https://iris.uniss.it/handle/11388/346491
Pubblicato in:
FRONTIERS IN GENETICS
Journal
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