Mutational signatures and increased retrotransposon insertions in xeroderma pigmentosum variant skin tumors

Author:

Corradi Camila1,Vilar Juliana B1,Buzatto Vanessa C2,de Souza Tiago A13,Castro Ligia P1,Munford Veridiana1,De Vecchi Rodrigo4,Galante Pedro A F2ORCID,Orpinelli Fernanda2,Miller Thiago L A25,Buzzo José L2,Sotto Mirian N6,Saldiva Paulo6,de Oliveira Jocelânio W7,Chaibub Sulamita C W8,Sarasin Alain9,Menck Carlos F M1ORCID

Affiliation:

1. Department of Microbiology, Institute of Biomedical Sciences, University of São Paulo , São Paulo, SP 05508-000 , Brazil

2. Molecular Oncology Center, Bioinformatics Laboratory, Hospital Sírio-Libanês , São Paulo, SP 01308-060 , Brazil

3. Tau GC Bioinformatics , Cotia, SP 06711-020 , Brazil

4. L’Oréal Research & Innovation , Rio de Janeiro, RJ 21044-020 , Brazil

5. Department of Biochemistry, Institute of Chemistry, University of Sao Paulo , Sao Paulo, SP 05508-000 , Brazil

6. Medical School, University of Sao Paulo , Sao Paulo, SP 01246-903 , Brazil

7. Institute of Mathematics and Statistics, University of São Paulo , São Paulo, SP 05508-090 , Brazil

8. Goiânia General Hospital , Goiânia, GO 74110-010 , Brazil

9. Laboratory of Genetic Instability and Oncogenesis, UMR8200 CNRS, Gustave Roussy, Université Paris-Sud , Villejuif , France

Abstract

Abstract Xeroderma pigmentosum variant (XP-V) is an autosomal recessive disease with an increased risk of developing cutaneous neoplasms in sunlight-exposed regions. These cells are deficient in the translesion synthesis (TLS) DNA polymerase eta, responsible for bypassing different types of DNA lesions. From the exome sequencing of 11 skin tumors of a genetic XP-V patients’ cluster, classical mutational signatures related to sunlight exposure, such as C>T transitions targeted to pyrimidine dimers, were identified. However, basal cell carcinomas also showed distinct C>A mutation spectra reflecting a mutational signature possibly related to sunlight-induced oxidative stress. Moreover, four samples carry different mutational signatures, with C>A mutations associated with tobacco chewing or smoking usage. Thus, XP-V patients should be warned of the risk of these habits. Surprisingly, higher levels of retrotransposon somatic insertions were also detected when the tumors were compared with non-XP skin tumors, revealing other possible causes for XP-V tumors and novel functions for the TLS polymerase eta in suppressing retrotransposition. Finally, the expected high mutation burden found in most of these tumors renders these XP patients good candidates for checkpoint blockade immunotherapy.

Funder

Sao Paulo Research Foundation

International Collaboration Research

The Netherlands Organization for Scientific Research

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

L’Oréal Research & Innovation

Facility for Scientific Research

Multi-user genomic Section of the Human Genome & Stem Cell Research Center

Publisher

Oxford University Press (OUP)

Subject

Cancer Research,General Medicine

Reference58 articles.

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