Glioma oncogenesis in the Constitutional mismatch repair deficiency (CMMRD) syndrome

Author:

Guerrini-Rousseau Lea12ORCID,Merlevede Jane2,Denizeau Philippe3,Andreiuolo Felipe4,Varlet Pascale4,Puget Stéphanie5,Beccaria Kevin5,Blauwblomme Thomas5ORCID,Cabaret Odile6ORCID,Hamzaoui Nadim78,Bourdeaut Franck9ORCID,Faure-Conter Cécile10,Muleris Martine11,Colas Chrystelle12,Adam de Beaumais Tiphaine1,Castel David2ORCID,Rouleau Etienne6ORCID,Brugières Laurence12ORCID,Grill Jacques12ORCID,Debily Marie-Anne213

Affiliation:

1. Department of Children and Adolescents Oncology, Gustave Roussy , Villejuif , France

2. Molecular Predictors and New Targets in Oncology, INSERM U981, Team “Genomics and Oncogenesis of pediatric Brain Tumors,” Gustave Roussy, Université Paris-Saclay , Villejuif , France

3. Clinical Genetics, Rennes University Hospital , Rennes , France

4. Neuropathology and INSERM UMR1266 IMA-Brain, GHU-Paris Psychiatry and Neuroscience, Sainte-Anne Hospital , Paris , France

5. Neurosurgery, Necker Hospital, Paris University , Paris , France

6. Department of Medical Genetics, Gustave Roussy , Villejuif , France

7. Service de Génétique et Biologie Moléculaires, Hôpital Cochin, APHP Centre Université de Paris , Paris , France

8. Inserm UMR_S1016, Institut Cochin, Université de Paris , Paris , France

9. Translational Research in Pediatric Oncology (RTOP), INSERM U830 Laboratory of Genetics and Biology of Cancers, SIREDO: Care, Innovation, and Research for Children, Adolescents and Young Adults with Cancer, Curie Institute, Paris University , Paris , France

10. Pediatric Hematology and Oncology Institute (IHOPE), Centre Leon Berard , Lyon , France

11. Centre de Recherche Saint-Antoine, Sorbonne Université , Paris , France

12. Département de Génétique, Institut Curie, Université Paris Sciences Lettres , Paris , France

13. Département de Biologie, Université Evry, Université Paris-Saclay , Evry , France

Abstract

Abstract Background Constitutional mismatch repair deficiency (CMMRD) is a cancer predisposition due to biallelic mutations in one of the mismatch repair (MMR) genes associated with early onset of cancers, especially high-grade gliomas. Our aim was to decipher the molecular specificities of these gliomas. Methods Clinical, histopathological, and whole exome sequencing data were analyzed in 12 children with genetically proven CMMRD and a high-grade glioma. Results PDL1 expression was present in immunohistochemistry in 50% of the samples. In 9 patients, the glioma harbored an ultra-hypermutated phenotype (104–635 coding single nucleotide variants (SNV) per Mb, median 204). Driver mutations in POLE and POLD1 exonuclease domains were described for 8 and 1 patients respectively and were always present in the mutation burst with the highest variant allele frequency (VAF). The mutational signatures were dominated by MMR-related ones and similar in the different mutation bursts of a same patient without subsequent enrichment of the mutation signatures with POL-driven ones. Median number of coding SNV with VAF above one of the driving polymerase mutation per Mb was 57 (17–191). Our findings suggest that somatic polymerase alterations does not entirely explain the ultra-hypermutant phenotype. SETD2, TP53, NF1, EPHB2, PRKDC, and DICER1 genes were frequently mutated with higher VAF than the deleterious somatic polymerase mutation. Conclusions CMMRD-associated gliomas have a specific oncogenesis that does not involve usual pathways and mutations seen in sporadic pediatric or adult glioblastomas. Frequent alterations in other pathways such as MAPK may suggest the use of other targeted therapies along with PD1 inhibitors.

Funder

Fondation Gustave Roussy Pediatric Campaign

Fédération Enfants et Santé

Société Française des Cancers de l’Enfant

Imagine 4 Margo

Etoile de Martin

Publisher

Oxford University Press (OUP)

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