Pediatric Chordoma: A Tale of Two Genomes
Katrina O'Halloran1, Hesamedin Hakimjavadi2, Moiz Bootwalla2
1Department of Hematology, Oncology and Blood & Marrow Transplantation, Children's Hospital Los Angeles, Los Angeles, California.
Abstract:
Little is known about the genomic alterations in chordoma, with the exception of loss of SMARCB1, a core member of the SWI/SNF complex, in poorly differentiated chordomas. A TBXT duplication and rs2305089 polymorphism, located at 6q27, are known genetic susceptibility loci. A comprehensive genomic analysis of the nuclear and mitochondrial genomes in pediatric chordoma has not yet been reported. In this study, we performed WES and mtDNA genome sequencing on 29 chordomas from 23 pediatric patients. Findings were compared with that from whole-genome sequencing datasets of 80 adult patients with skull base chordoma. In the pediatric chordoma cohort, 81% of the somatic mtDNA mutations were observed in NADH complex genes, which is significantly enriched compared with the rest of the mtDNA genes (P = 0.001). In adult chordomas, mtDNA mutations were also enriched in the NADH complex genes (P < 0.0001). Furthermore, a progressive increase in heteroplasmy of nonsynonymous mtDNA mutations was noted in patients with multiple tumors (P = 0.0007). In the nuclear genome, rare likely germline in-frame indels in ARID1B, a member of the SWI/SNF complex located at 6q25.3, were observed in five pediatric patients (22%) and four patients in the adult cohort (5%). The frequency of rare ARID1B indels in the pediatric cohort is significantly higher than that in the adult cohort (P = 0.0236, Fisher's exact test), but they were both significantly higher than that in the ethnicity-matched populations (P < 5.9e-07 and P < 0.0001174, respectively). Implications: germline ARID1B indels and mtDNA aberrations seem important for chordoma genesis, especially in pediatric chordoma.
Insights
Genomic analysis reveals mitochondrial DNA mutations and rare ARID1B gene alterations in pediatric chordoma. These findings suggest a significant role for germline ARID1B indels and mtDNA aberrations in chordoma development, particularly in young patients.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Chordoma genomic alterations are largely unknown, except for SMARCB1 loss in poorly differentiated types.
- Known genetic loci include TBXT duplication and rs2305089 polymorphism at 6q27.
- Comprehensive genomic analysis of pediatric chordoma's nuclear and mitochondrial DNA is lacking.
Purpose of the Study:
- To conduct a comprehensive genomic analysis of pediatric chordoma.
- To compare pediatric chordoma genomic findings with adult skull base chordoma.
- To investigate the role of nuclear and mitochondrial genome alterations in chordoma genesis.
Main Methods:
- Whole exome sequencing (WES) and mtDNA genome sequencing on 29 pediatric chordomas.
- Comparison with whole-genome sequencing data from 80 adult chordomas.
- Analysis of nuclear genome for germline indels and mtDNA for mutations.
Main Results:
- Somatic mtDNA mutations were significantly enriched in NADH complex genes in both pediatric (81%) and adult chordomas.
- Progressive increase in heteroplasmy of nonsynonymous mtDNA mutations observed in patients with multiple tumors.
- Rare likely germline in-frame indels in ARID1B (SWI/SNF complex) found in 22% of pediatric and 5% of adult chordomas, significantly higher than controls.
Conclusions:
- Germline ARID1B indels and mitochondrial DNA aberrations are implicated in chordoma genesis.
- These genetic factors appear particularly important in the development of pediatric chordoma.
- The study highlights novel genetic insights into chordoma, especially in pediatric cases.
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