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The Coexistence of a BRCA2 Germline and a DICER1 Somatic Variant in Two First-degree Cousins Suggests Their Potential Synergic Effect

Abstract

Cancer predisposition syndromes are recognized in about 10% of pediatric malignancies with several genes specifically involved in a subset of pediatric tumors such as DICER1, in pleuropulmonary blastoma, cystic nephroma, and brain sarcomas. By contrast, the role of BRCA1/2 in pediatric cancer predisposition is still under investigation. We present two cases of young first-degree cousins, both carrying a germline BRCA2 variant and developing tumors characterized by somatic DICER1 mutations. Patient 1 presented with a cystic nephroma harboring a somatic DICER1 variant (p.Asp1810Tyr), while patient 2 had a primary intracranial DICER1-mutated sarcoma showing a distinct somatic DICER1 variant (p.Asp1709Glu) as well as biallelic inactivation of TP53 (p.Val173Leu, VAF 91%) and APC (p.Ile1307Lys, VAF 95%) and a pathogenic variant in KRAS (p.Gln61His). Both patients carried the same germline BRCA2 variant (p.Arg2842Cys) of unknown significance. The same variant was found in the mother of patient 2 and in the father of patient 1, who are siblings. A homologous recombination deficiency signature was not identified in any of the two tumors, possibly suggesting a reduction of BRCA2 activity. The association of BRCA2 and DICER1 variants in our cases hints at a potential cooperative role in cancer pathogenesis. Further studies are warranted to elucidate the interplay between BRCA1/2 and DICER1 variants and their implications for cancer predisposition and treatment in pediatric patients.

Citing Articles

DICER1: The Argonaute Endonuclease Family Member and Its Role in Pediatric and Youth Pathology.

Sergi C, Minervini F Biology (Basel). 2025; 14(1).

PMID: 39857323 PMC: 11761906. DOI: 10.3390/biology14010093.

References
1.
Fang C, Wu H, Zhang M, Liu J, Zhang G . Fanconi Anemia Pathway: Mechanisms of Breast Cancer Predisposition Development and Potential Therapeutic Targets. Front Cell Dev Biol. 2020; 8:160. PMC: 7142266. DOI: 10.3389/fcell.2020.00160. View

2.
Kratz C, Jongmans M, Cave H, Wimmer K, Behjati S, Guerrini-Rousseau L . Predisposition to cancer in children and adolescents. Lancet Child Adolesc Health. 2021; 5(2):142-154. DOI: 10.1016/S2352-4642(20)30275-3. View

3.
Leshno A, Shapira S, Liberman E, Kraus S, Sror M, Harlap-Gat A . The APC I1307K allele conveys a significant increased risk for cancer. Int J Cancer. 2015; 138(6):1361-7. DOI: 10.1002/ijc.29876. View

4.
Zhang J, Walsh M, Wu G, Edmonson M, Gruber T, Easton J . Germline Mutations in Predisposition Genes in Pediatric Cancer. N Engl J Med. 2015; 373(24):2336-2346. PMC: 4734119. DOI: 10.1056/NEJMoa1508054. View

5.
Mark L, Terp S, Krarup H, Thomassen M, Pedersen I, Bogsted M . Homologous Recombination Deficiency Detection Algorithms: A Systematic Review. Cancers (Basel). 2023; 15(23). PMC: 10705160. DOI: 10.3390/cancers15235633. View