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Isolation, Enrichment, and Maintenance of Medulloblastoma Stem Cells
Published on: September 1, 2010
Clinical and mutational profiles of adult medulloblastoma groups
Gabriel Chun-Hei Wong1, Kay Ka-Wai Li2, Wei-Wei Wang3
1Department of Anatomical and Cellular Pathology, The Chinese University of Hong Kong, Shatin, Hong Kong. gabrielchunhei@gmail.com.
Abstract:
Adult medulloblastomas are clinically and molecularly understudied due to their rarity. We performed molecular grouping, targeted sequencing, and TERT promoter Sanger sequencing on a cohort of 99 adult medulloblastomas. SHH made up 50% of the cohort, whereas Group 3 (13%) was present in comparable proportion to WNT (19%) and Group 4 (18%). In contrast to paediatric medulloblastomas, molecular groups had no prognostic impact in our adult cohort (p = 0.877). Most frequently mutated genes were TERT (including promoter mutations, mutated in 36% cases), chromatin modifiers KMT2D (31%) and KMT2C (30%), TCF4 (31%), PTCH1 (27%) and DDX3X (24%). Adult WNT patients showed enrichment of TP53 mutations (6/15 WNT cases), and 3/6 TP53-mutant WNT tumours were of large cell/anaplastic histology. Adult SHH medulloblastomas had frequent upstream pathway alterations (PTCH1 and SMO mutations) and few downstream alterations (SUFU mutations, MYCN amplifications). TERT promoter mutations were found in 72% of adult SHH patients, and were restricted to this group. Adult Group 3 tumours lacked hallmark MYC amplifications, but had recurrent mutations in KBTBD4 and NOTCH1. Adult Group 4 tumours harboured recurrent mutations in TCF4 and chromatin modifier genes. Overall, amplifications of MYC and MYCN were rare (3%). Since molecular groups were not prognostic, alternative prognostic markers are needed for adult medulloblastoma. KMT2C mutations were frequently found across molecular groups and were associated with poor survival (p = 0.002). Multivariate analysis identified histological type (p = 0.026), metastasis (p = 0.031) and KMT2C mutational status (p = 0.046) as independent prognosticators in our cohort. In summary, we identified distinct clinical and mutational characteristics of adult medulloblastomas that will inform their risk stratification and treatment.
Insights
Adult medulloblastomas are rare and understudied. This study reveals distinct molecular features and identifies KMT2C mutations as a key prognostic marker for improved risk stratification and treatment in adult medulloblastoma patients.
Area of Science:
- Neuro-oncology
- Genomics
- Cancer Biology
Background:
- Adult medulloblastomas are rare and lack comprehensive molecular and clinical characterization.
- Existing knowledge primarily focuses on pediatric medulloblastomas, leaving adult cases understudied.
- Understanding the molecular landscape is crucial for developing targeted therapies and improving patient outcomes.
Purpose of the Study:
- To perform molecular grouping and targeted sequencing on a cohort of adult medulloblastomas.
- To identify distinct clinical and mutational characteristics specific to adult medulloblastomas.
- To discover novel prognostic markers for risk stratification and treatment guidance in adult medulloblastoma.
Main Methods:
- Molecular grouping, targeted sequencing, and TERT promoter sequencing were performed on 99 adult medulloblastoma samples.
- Analysis included identifying frequently mutated genes, pathway alterations, and gene amplifications.
- Statistical methods, including multivariate analysis, were used to determine prognostic impact.
Main Results:
- SHH (50%), WNT (19%), Group 3 (13%), and Group 4 (18%) were the molecular subgroups identified.
- TERT promoter mutations (36%), KMT2D (31%), KMT2C (30%), TCF4 (31%), PTCH1 (27%), and DDX3X (24%) were the most frequent mutations.
- KMT2C mutations were associated with poor survival (p=0.002), and histological type, metastasis, and KMT2C mutational status were independent prognosticators.
Conclusions:
- Adult medulloblastomas exhibit distinct molecular and clinical features compared to pediatric cases.
- Molecular subgroups lacked prognostic impact in adults, necessitating alternative prognostic markers.
- KMT2C mutations represent a significant independent prognosticator, crucial for risk stratification and guiding treatment strategies in adult medulloblastoma.
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