Back to Search Start Over

A MYCN-driven de-differentiation profile identifies a subgroup of aggressive retinoblastoma.

Authors :
Ryl, Tatsiana
Afanasyeva, Elena
Hartmann, Till
Schwermer, Melanie
Schneider, Markus
Schröder, Christopher
Wagemanns, Maren
Bister, Arthur
Kanber, Deniz
Steenpass, Laura
Schramm, Kathrin
Jones, Barbara
Jones, David T. W.
Biewald, Eva
Astrahantseff, Kathy
Hannenberg, Helmut
Rahmann, Sven
Lohmann, Dietmar R.
Schramm, Alexander
Ketteler, Petra
Source :
Communications Biology; 7/30/2024, Vol. 7 Issue 1, p1-16, 16p
Publication Year :
2024

Abstract

Retinoblastoma are childhood eye tumors arising from retinal precursor cells. Two distinct retinoblastoma subtypes with different clinical behavior have been described based on gene expression and methylation profiling. Using consensus clustering of DNA methylation analysis from 61 retinoblastomas, we identify a MYCN-driven cluster of subtype 2 retinoblastomas characterized by DNA hypomethylation and high expression of genes involved in protein synthesis. Subtype 2 retinoblastomas outside the MYCN-driven cluster are characterized by high expression of genes from mesodermal development, including NKX2-5. Knockdown of MYCN expression in retinoblastoma cell models causes growth arrest and reactivates a subtype 1-specific photoreceptor signature. These molecular changes suggest that removing the driving force of MYCN oncogenic activity rescues molecular circuitry driving subtype 1 biology. The MYCN-RB gene signature generated from the cell models better identifies MYCN-driven retinoblastoma than MYCN amplification and can identify cases that may benefit from MYCN-targeted therapy. MYCN drives tumor progression in a molecularly defined retinoblastoma subgroup, and inhibiting MYCN activity could restore a more differentiated and less aggressive tumor biology. DNA methylation analysis identifies a MYCN-driven subgroup of aggressive retinoblastoma that may benefit from MYCN-targeted therapy. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
23993642
Volume :
7
Issue :
1
Database :
Complementary Index
Journal :
Communications Biology
Publication Type :
Academic Journal
Accession number :
178777505
Full Text :
https://doi.org/10.1038/s42003-024-06596-6