Identification of novel candidate predisposing genes in familial nonmedullary thyroid carcinoma implicating DNA damage repair pathways

Author:

Pires Carolina12ORCID,Marques Inês J.12,Saramago Ana1,Moura Margarida M.1,Pojo Marta1,Cabrera Rafael3,Santos Catarina4,Rosário Francisco5,Lousa Diana6,Vicente João B.6,Bandeiras Tiago M.7,Teixeira Manuel R.48ORCID,Leite Valeriano29,Cavaco Branca M.1

Affiliation:

1. Unidade de Investigação em Patobiologia Molecular Instituto Português de Oncologia de Lisboa Francisco Gentil Lisbon Portugal

2. NOVA Medical School/Faculdade de Ciências Médicas Universidade NOVA de Lisboa Lisbon Portugal

3. Serviço de Anatomia Patológica Instituto Português de Oncologia de Lisboa Francisco Gentil Lisbon Portugal

4. Serviço de Genética Instituto Português de Oncologia do Porto Francisco Gentil Porto Portugal

5. Serviço de Endocrinologia Hospital da Luz Lisboa Lisbon Portugal

6. Instituto de Tecnologia Química e Biológica António Xavier (ITQB), Universidade Nova de Lisboa Oeiras Portugal

7. Instituto de Biologia Experimental e Tecnológica (iBET) Oeiras Portugal

8. Instituto de Ciências Biomédicas Abel Salazar (ICBAS), Universidade do Porto Porto Portugal

9. Serviço de Endocrinologia Instituto Português de Oncologia de Lisboa Francisco Gentil Lisbon Portugal

Abstract

AbstractThe genetic basis of nonsyndromic familial nonmedullary thyroid carcinoma (FNMTC) is still poorly understood, as the susceptibility genes identified so far only account for a small percentage of the genetic burden. Recently, germline mutations in DNA repair‐related genes have been reported in cases with thyroid cancer. In order to clarify the genetic basis of FNMTC, 94 genes involved in hereditary cancer predisposition, including DNA repair genes, were analyzed in 48 probands from FNMTC families, through targeted next‐generation sequencing (NGS). Genetic variants were selected upon bioinformatics analysis and in silico studies. Structural modeling and network analysis were also performed. In silico results of NGS data unveiled likely pathogenic germline variants in 15 families with FNMTC, in genes encoding proteins involved in DNA repair (ATM, CHEK2, ERCC2, BRCA2, ERCC4, FANCA, FANCD2, FANCF, and PALB2) and in the DICER1, FLCN, PTCH1, BUB1B, and RHBDF2 genes. Structural modeling predicted that most missense variants resulted in the disruption of networks of interactions between residues, with implications for local secondary and tertiary structure elements. Functional annotation and network analyses showed that the involved DNA repair proteins functionally interact with each other, within the same DNA repair pathway and across different pathways. MAPK activation was a common event in tumor progression. This study supports that rare germline variants in DNA repair genes may be accountable for FNMTC susceptibility, with potential future utility in patients' clinical management, and reinforces the relevance of DICER1 in disease etiology.

Funder

Fundação para a Ciência e a Tecnologia

Publisher

Wiley

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