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PMID: 31653819 Published · aheadofprint English Case Reports

Genomic alterations underlying spinal metastases in pediatric H3K27M-mutant pineal parenchymal tumor of intermediate differentiation: case report.

Journal of neurosurgery. Pediatrics ·2019-10-25 ·页码 1-10

Fomchenko EI, Erson-Omay EZ, Kundishora AJ, Hong CS, Daniel AA, Allocco A, Duy PQ, Darbinyan A, Marks AM, DiLuna ML, Kahle KT, Huttner A

Abstract

Pediatric midline tumors are devastating high-grade lesions with a dismal prognosis and no curative surgical options. Here, the authors report the clinical presentation, surgical management, whole-exome sequencing (WES), and clonality analysis of a patient with a radically resected H3K27M-mutant pineal parenchymal tumor (PPT) and spine metastases consistent with PPT of intermediate differentiation (PPTID). They identified somatic mutations in H3F3A (H3K27M), FGFR1, and NF1 both in the original PPT and in the PPTID metastases. They also found 12q amplification containing CDK4/MDM2 and chromosome 17 loss of heterozygosity overlapping with NF1 that resulted in biallelic NF1 loss. They noted a hypermutated phenotype with increased C>T transitions within the PPTID metastases and 2p amplification overlapping with the MYCN locus. Clonality analysis detected three founder clones maintained during progression and metastasis. Tumor clones present within the PPTID metastases but not the pineal midline tumor harbored mutations in APC and TIMP2.While the majority of H3K27M mutations are found in pediatric midline gliomas, it is increasingly recognized that this mutation is present in a wider range of lesions with a varied morphological appearance. The present case appears to be the first description of H3K27M mutation in PPTID. Somatic mutations in H3F3A, FGFR1, and NF1 have been suggested to be driver mutations in pediatric midline gliomas. Their clonality and presence in over 80% of tumor cells in our patient's PPTID are consistent with similarly crucial roles in early tumorigenesis, with progression mediated by copy number variations and chromosomal aberrations involving known oncogenes and tumor suppressors. The roles of APC and TIMP2 mutations in progression and metastasis remain to be investigated.

Keywords
CNV = copy number variation DIPG = diffuse intrinsic pontine glioma GBM = glioblastoma H3K27M mutation LOH = loss of heterozygosity PPT = pineal parenchymal tumor PPTID PPTID = PPT of intermediate differentiation VAF = variant allele frequency WES = whole-exome sequencing WHO = World Health Organization clonality analysis oncology pineal parenchymal tumor of intermediate differentiation spine metastases whole-exome sequencing
作者与单位
共 12 位作者,点击展开单位 / ORCID
Fomchenko Elena I
Departments of1Neurosurgery.
Erson-Omay E Zeynep
2Genetics.
Kundishora Adam J
Departments of1Neurosurgery.
Hong Christopher S
Departments of1Neurosurgery.
Daniel Ava A
8Yale College, Yale University, New Haven, Connecticut.
Allocco August
2Genetics.
Duy Phan Q
Departments of1Neurosurgery.
Darbinyan Armine
7Pathology, Yale School of Medicine.
Marks Asher M
3Pediatrics (Hematology/Oncology).
DiLuna Michael L
Departments of1Neurosurgery. | 5Pediatrics.
Kahle Kristopher T
Departments of1Neurosurgery. | 4Centers for Mendelian Genomics and Yale Program on Neurogenetics, Yale School of Medicine; and. | 5Pediatrics. | 6Cellular & Molecular Physiology, and.
Huttner Anita
7Pathology, Yale School of Medicine.
Article Info
Journal
Journal of neurosurgery. Pediatrics
Abbr.
J Neurosurg Pediatr
ISSN
1933-0715
Published
2019-10-25
电子出版
2019-00-25
页码
1-10
Language
English
Country/Region
United States
NLM ID
101463759
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