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Published on: May 9, 2025
Primary mismatch repair deficient IDH-mutant astrocytoma (PMMRDIA) is a distinct type with a poor prognosis
Abigail K Suwala1,2, Damian Stichel2, Daniel Schrimpf1,2
1Department of Neuropathology, Institute of Pathology, Heidelberg University Hospital, Heidelberg, Germany.
Abstract:
Diffuse IDH-mutant astrocytoma mostly occurs in adults and carries a favorable prognosis compared to IDH-wildtype malignant gliomas. Acquired mismatch repair deficiency is known to occur in recurrent IDH-mutant gliomas as resistance mechanism towards alkylating chemotherapy. In this multi-institutional study, we report a novel epigenetic group of 32 IDH-mutant gliomas with proven or suspected hereditary mismatch repair deficiency. None of the tumors exhibited a combined 1p/19q deletion. These primary mismatch repair-deficient IDH-mutant astrocytomas (PMMRDIA) were histologically high-grade and were mainly found in children, adolescents and young adults (median age 14 years). Mismatch repair deficiency syndromes (Lynch or Constitutional Mismatch Repair Deficiency Syndrom (CMMRD)) were clinically diagnosed and/or germline mutations in DNA mismatch repair genes (MLH1, MSH6, MSH2) were found in all cases, except one case with a family and personal history of colon cancer and another case with MSH6-deficiency available only as recurrent tumor. Loss of at least one of the mismatch repair proteins was detected via immunohistochemistry in all, but one case analyzed. Tumors displayed a hypermutant genotype and microsatellite instability was present in more than half of the sequenced cases. Integrated somatic mutational and chromosomal copy number analyses showed frequent inactivation of TP53, RB1 and activation of RTK/PI3K/AKT pathways. In contrast to the majority of IDH-mutant gliomas, more than 60% of the samples in our cohort presented with an unmethylated MGMT promoter. While the rate of immuno-histochemical ATRX loss was reduced, variants of unknown significance were more frequently detected possibly indicating a higher frequency of ATRX inactivation by protein malfunction. Compared to reference cohorts of other IDH-mutant gliomas, primary mismatch repair-deficient IDH-mutant astrocytomas have by far the worst clinical outcome with a median survival of only 15 months irrespective of histological or molecular features. The findings reveal a so far unknown entity of IDH-mutant astrocytoma with high prognostic relevance. Diagnosis can be established by aligning with the characteristic DNA methylation profile, by DNA-sequencing-based proof of mismatch repair deficiency or immunohistochemically demonstrating loss-of-mismatch repair proteins.
Insights
This study identifies a new group of primary mismatch repair-deficient IDH-mutant astrocytomas (PMMRDIA) mainly in young patients. These aggressive tumors have a poor prognosis, unlike typical IDH-mutant gliomas.
Area of Science:
- Neuro-oncology
- Cancer Genomics
- Epigenetics
Background:
- Diffuse IDH-mutant astrocytomas generally have a better prognosis than IDH-wildtype gliomas.
- Acquired mismatch repair deficiency is a known resistance mechanism in recurrent gliomas.
- Hereditary mismatch repair deficiency syndromes are associated with various cancers.
Purpose of the Study:
- To identify and characterize a novel epigenetic group of IDH-mutant gliomas with hereditary mismatch repair deficiency.
- To investigate the clinical, molecular, and prognostic features of these primary mismatch repair-deficient IDH-mutant astrocytomas (PMMRDIA).
Main Methods:
- Multi-institutional study analyzing 32 IDH-mutant gliomas.
- Clinical diagnosis of mismatch repair deficiency syndromes (Lynch or CMMRD).
- Germline mutation analysis of DNA mismatch repair genes (MLH1, MSH6, MSH2).
- Immunohistochemistry for mismatch repair proteins.
- Somatic mutational and chromosomal copy number analyses.
- MGMT promoter methylation analysis.
- ATRX expression analysis.
Main Results:
- Identified 32 primary mismatch repair-deficient IDH-mutant astrocytomas (PMMRDIA), predominantly in young patients (median age 14).
- Tumors showed high-grade histology, hypermutant genotype, microsatellite instability, and frequent TP53/RB1 inactivation.
- PMMRDIA exhibited a significantly worse clinical outcome (median survival 15 months) compared to other IDH-mutant gliomas.
- Over 60% had unmethylated MGMT promoter, contrasting with typical IDH-mutant gliomas.
Conclusions:
- PMMRDIA represent a distinct molecular and clinical entity within IDH-mutant astrocytomas.
- These tumors are associated with hereditary mismatch repair deficiency and have a poor prognosis.
- Diagnosis can be aided by DNA methylation profiles, sequencing, or immunohistochemistry for mismatch repair proteins.
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