Transposable elements alter gene expression and may impact response to cisplatin therapy in ovarian cancer

Author:

Mombach Daniela Moreira1,Mercuri Rafael Luiz Vieira23,da Fontoura Gomes Tiago Minuzzi Freire1,Galante Pedro A F2ORCID,Loreto Elgion Lucio Silva4

Affiliation:

1. Programa de Pós-Graduação em Genética e Biologia Molecular, Universidade Federal do Rio Grande do Sul , Porto Alegre, Rio Grande do Sul, Brazil

2. Hospital Sírio-Libanês , São Paulo, São Paulo, Brazil

3. Interunidades em Bioinformática, Universidade de São Paulo , São Paulo, Brazil

4. Universidade Federal de Santa Maria Departamento de Bioquímica e Biologia Molecular, , Santa Maria, Rio Grande do Sul, Brazil

Abstract

Abstract Cisplatin is widely employed for cancer treatment; therefore, understanding resistance to this drug is critical for therapeutic practice. While studies have delved into differential gene expression in the context of cisplatin resistance, findings remain somewhat scant. We performed a comprehensive investigation of transposable elements (TEs) expression and their impact in host genes in two cisplatin-treated ovarian cancer cell lines. RNA-seq, ATAC-seq, and in-depth bioinformatics analysis were used to compare cisplatin-sensitive and -resistant ovarian cancer cell lines. Our results reveal that cisplatin therapy alters not only the expression of protein-coding genes, but also key TEs, including LINE1, Alu, and endogenous retroviruses, in both cisplatin-sensitive and -resistant cell lines. By co-expressing with downstream genes or by creating chimeric transcripts with host genes at their insertion sites, these TEs seem to control the expression of protein-coding genes, including tumor-related genes. Our model uncovers TEs influencing the expression of cancer genes and cancer pathways. Collectively, our findings indicate that TE alterations associated with cisplatin treatment occur in critical cancer genes and cellular pathways synergically. This research highlights the importance of considering the entire spectrum of transcribed elements in the genome, especially TE expression, for a complete understanding of complex models like cancer response to treatment.

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Publisher

Oxford University Press (OUP)

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