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Next-Generation Sequencing of Retinoblastoma Identifies Pathogenic Alterations beyond RB1 Inactivation That Correlate with Aggressive Histopathologic Features

Authors :
Ritu Roy
Jessica Van Ziffle
David A. Solomon
Michele M. Bloomer
Nicola J. Cadenas
Armin R. Afshar
James P. Grenert
Melike Pekmezci
Meredith Stevers
Courtney Onodera
Boris C. Bastian
W. Patrick Devine
Anuradha Banerjee
Bertil Damato
Adam B. Olshen
Source :
Ophthalmology, vol 127, iss 6, Ophthalmology
Publication Year :
2020
Publisher :
eScholarship, University of California, 2020.

Abstract

Purpose To determine the usefulness of a comprehensive, targeted-capture next-generation sequencing (NGS) assay for the clinical management of children undergoing enucleation for retinoblastoma. Design Cohort study. Participants Thirty-two children with retinoblastoma. Methods We performed targeted NGS using the UCSF500 Cancer Panel (University of California, San Francisco, San Francisco, CA) on formalin-fixed, paraffin-embedded tumor tissue along with constitutional DNA isolated from peripheral blood, buccal swab, or uninvolved optic nerve. Peripheral blood samples were also sent to a commercial laboratory for germline RB1 mutation testing. Main Outcome Measures Presence or absence of germline RB1 mutation or deletion, tumor genetic profile, and association of genetic alterations with clinicopathologic features. Results Germline mutation or deletion of the RB1 gene was identified in all children with bilateral retinoblastoma (n = 12), and these NGS results were 100% concordant with commercial germline RB1 mutation analysis. In tumor tissue tested with NGS, biallelic inactivation of RB1 was identified in 28 tumors and focal MYCN amplification was identified in 4 tumors (2 with wild-type RB1 and 2 with biallelic RB1 inactivation). Additional likely pathogenic alterations beyond RB1 were identified in 13 tumors (41%), several of which have not been reported previously in retinoblastoma. These included focal amplifications of MDM4 and RAF1, as well as damaging mutations involving BCOR, ARID1A, MGA, FAT1, and ATRX. The presence of additional likely pathogenetic mutations beyond RB1 inactivation was associated with aggressive histopathologic features, including higher histologic grade and anaplasia, and also with both unilateral and sporadic disease. Conclusions Comprehensive NGS analysis reliably detects relevant mutations, amplifications, and chromosomal copy number changes in retinoblastoma. The presence of genetic alterations beyond RB1 inactivation correlates with aggressive histopathologic features.

Details

Database :
OpenAIRE
Journal :
Ophthalmology, vol 127, iss 6, Ophthalmology
Accession number :
edsair.doi.dedup.....c3c16724cad14b3637307e3c1d08c6d9