| Literature DB >> 33319313 |
Philipp Sievers1,2, Martin Sill3,4, Christina Blume1,2,5, Arnault Tauziede-Espariat6, Daniel Schrimpf1,2, Damian Stichel1,2, David E Reuss1,2, Helin Dogan1,2, Christian Hartmann7, Christian Mawrin8, Martin Hasselblatt9, Walter Stummer10, Uta Schick11, Jürgen Hench12, Stephan Frank12, Ralf Ketter13, Leonille Schweizer14,15, Jens Schittenhelm16, Stéphanie Puget17, Sebastian Brandner18,19, Zane Jaunmuktane18,20, Benno Küsters21, Zied Abdullaev22, Melike Pekmezci23, Matija Snuderl24, Miriam Ratliff25, Christel Herold-Mende26, Andreas Unterberg27, Kenneth Aldape22, David W Ellison28, Pieter Wesseling29,30, Guido Reifenberger31,32, Wolfgang Wick33,34, Arie Perry23,35, Pascale Varlet6, Stefan M Pfister3,4,36, David T W Jones3,37, Andreas von Deimling1,2, Felix Sahm38,39,40.
Abstract
Clear cell meningioma represents an uncommon variant of meningioma that typically affects children and young adults. Although an enrichment of loss-of-function mutations in the SMARCE1 gene has been reported for this subtype, comprehensive molecular investigations are lacking. Here we describe a molecularly distinct subset of tumors (n = 31), initially identified through genome-wide DNA methylation screening among a cohort of 3093 meningiomas, of which most were diagnosed histologically as clear cell meningioma. This cohort was further supplemented by an additional 11 histologically diagnosed clear cell meningiomas for analysis (n = 42). Targeted DNA sequencing revealed SMARCE1 mutations in 33/34 analyzed samples, accompanied by a nuclear loss of expression determined via immunohistochemistry and a decreased SMARCE1 transcript expression in the tumor cells. Analysis of time to progression or recurrence of patients within the clear cell meningioma group (n = 14) in comparison to those with meningioma WHO grade 2 (n = 220) revealed a similar outcome and support the assignment of WHO grade 2 to these tumors. Our findings indicate the existence of a highly distinct epigenetic signature of clear cell meningiomas, separate from all other variants of meningiomas, with recurrent mutations in the SMARCE1 gene. This suggests that these tumors may arise from a different precursor cell population than the broad spectrum of the other meningioma subtypes.Entities:
Keywords: Brain tumor; Clear cell; DNA methylation profile; Meningioma; SMARCE1
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Year: 2020 PMID: 33319313 PMCID: PMC7847462 DOI: 10.1007/s00401-020-02247-2
Source DB: PubMed Journal: Acta Neuropathol ISSN: 0001-6322 Impact factor: 17.088