Epigenomic, genomic, and transcriptomic landscape of schwannomatosis

被引:0
作者
Sheila Mansouri
Suganth Suppiah
Yasin Mamatjan
Irene Paganini
Jeffrey C. Liu
Shirin Karimi
Vikas Patil
Farshad Nassiri
Olivia Singh
Yogi Sundaravadanam
Prisni Rath
Roberta Sestini
Francesca Gensini
Sameer Agnihotri
Jaishri Blakeley
Kimberly Ostrow
David Largaespada
Scott R. Plotkin
Anat Stemmer-Rachamimov
Marcela Maria Ferrer
Trevor J. Pugh
Kenneth D. Aldape
Laura Papi
Gelareh Zadeh
机构
[1] University Health Network,Princess Margaret Cancer Center and MacFeeters
[2] Wilkins Family Chair in Brain Tumor Research,Hamilton Center for Neuro
[3] Biomedical Sciences “Mario Serio”,Oncology Research
[4] University of Florence,The Department of Experimental and Clinical, Medical Genetics Unit
[5] Ontario Institute for Cancer Research,Department of Neurological Surgery, Children’s Hospital
[6] University of Pittsburgh,Department of Paediatrics
[7] Johns Hopkins University,Department of Pathology
[8] University of MN,División de Neurocirugía and División Genética
[9] Massachusetts General Hospital,Laboratory of Pathology, Center for Cancer Research
[10] Hospital de Clínicas “José de San Martín”,Division of Neurosurgery
[11] Universidad de Buenos Aires,undefined
[12] National Cancer Institute,undefined
[13] Toronto Western Hospital,undefined
[14] Krembil Brain Institute,undefined
来源
Acta Neuropathologica | 2021年 / 141卷
关键词
Schwannomatosis; Peripheral nerve sheath tumors; LZTR1; Genomics; Pain; MAPK;
D O I
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学科分类号
摘要
Schwannomatosis (SWNTS) is a genetic cancer predisposition syndrome that manifests as multiple and often painful neuronal tumors called schwannomas (SWNs). While germline mutations in SMARCB1 or LZTR1, plus somatic mutations in NF2 and loss of heterozygosity in chromosome 22q have been identified in a subset of patients, little is known about the epigenomic and genomic alterations that drive SWNTS-related SWNs (SWNTS-SWNs) in a majority of the cases. We performed multiplatform genomic analysis and established the molecular signature of SWNTS-SWNs. We show that SWNTS-SWNs harbor distinct genomic features relative to the histologically identical non-syndromic sporadic SWNs (NS-SWNS). We demonstrate the existence of four distinct DNA methylation subgroups of SWNTS-SWNs that are associated with specific transcriptional programs and tumor location. We show several novel recurrent non-22q deletions and structural rearrangements. We detected the SH3PXD2A-HTRA1 gene fusion in SWNTS-SWNs, with predominance in LZTR1-mutant tumors. In addition, we identified specific genetic, epigenetic, and actionable transcriptional programs associated with painful SWNTS-SWNs including PIGF, VEGF, MEK, and MTOR pathways, which may be harnessed for management of this syndrome.
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页码:101 / 116
页数:15
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