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The transcriptional co-repressor Runx1t1 is essential for MYCN-driven neuroblastoma tumorigenesis.

Authors :
Murray, Jayne E.
Valli, Emanuele
Milazzo, Giorgio
Mayoh, Chelsea
Gifford, Andrew J.
Fletcher, Jamie I.
Xue, Chengyuan
Jayatilleke, Nisitha
Salehzadeh, Firoozeh
Gamble, Laura D.
Rouaen, Jourdin R. C.
Carter, Daniel R.
Forgham, Helen
Sekyere, Eric O.
Keating, Joanna
Eden, Georgina
Allan, Sophie
Alfred, Stephanie
Kusuma, Frances K.
Clark, Ashleigh
Source :
Nature Communications; 7/11/2024, Vol. 15 Issue 1, p1-21, 21p
Publication Year :
2024

Abstract

MYCN oncogene amplification is frequently observed in aggressive childhood neuroblastoma. Using an unbiased large-scale mutagenesis screen in neuroblastoma-prone transgenic mice, we identify a single germline point mutation in the transcriptional corepressor Runx1t1, which abolishes MYCN-driven tumorigenesis. This loss-of-function mutation disrupts a highly conserved zinc finger domain within Runx1t1. Deletion of one Runx1t1 allele in an independent Runx1t1 knockout mouse model is also sufficient to prevent MYCN-driven neuroblastoma development, and reverse ganglia hyperplasia, a known pre-requisite for tumorigenesis. Silencing RUNX1T1 in human neuroblastoma cells decreases colony formation in vitro, and inhibits tumor growth in vivo. Moreover, RUNX1T1 knockdown inhibits the viability of PAX3-FOXO1 fusion-driven rhabdomyosarcoma and MYC-driven small cell lung cancer cells. Despite the role of Runx1t1 in MYCN-driven tumorigenesis neither gene directly regulates the other. We show RUNX1T1 forms part of a transcriptional LSD1-CoREST3-HDAC repressive complex recruited by HAND2 to enhancer regions to regulate chromatin accessibility and cell-fate pathway genes. MYCN-amplified neuroblastoma remains an aggressive childhood cancer with its core regulatory circuits less understood. Here, the authors identify that the transcriptional corepressor Runx1t1 is indispensable for MYCN-driven neuroblastoma tumorigenesis. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20411723
Volume :
15
Issue :
1
Database :
Complementary Index
Journal :
Nature Communications
Publication Type :
Academic Journal
Accession number :
178416003
Full Text :
https://doi.org/10.1038/s41467-024-49871-0