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A SNAI2/CTCF Interaction is Required for NOTCH1 Expression in Rhabdomyosarcoma.

Authors :
Sreenivas, Prethish
Wang, Long
Wang, Meng
Challa, Anil
Modi, Paulomi
Hensch, Nicole Rae
Gryder, Berkley
Chou, Hsien-Chao
Zhao, Xiang R.
Sunkel, Benjamin
Moreno-Campos, Rodrigo
Khan, Javed
Stanton, Benjamin Z.
Ignatius, Myron S.
Source :
Molecular & Cellular Biology. 2023, Vol. 43 Issue 11, p547-565. 19p.
Publication Year :
2023

Abstract

Rhabdomyosarcoma (RMS) is a pediatric malignancy of the muscle with characteristics of cells blocked in differentiation. NOTCH1 is an oncogene that promotes self-renewal and blocks differentiation in the fusion negative-RMS sub-type. However, how NOTCH1 expression is transcriptionally maintained in tumors is unknown. Analyses of SNAI2 and CTCF chromatin binding and HiC analyses revealed a conserved SNAI2/CTCF overlapping peak downstream of the NOTCH1 locus marking a sub-topologically associating domain (TAD) boundary. Deletion of the SNAI2-CTCF peak showed that it is essential for NOTCH1 expression and viability of FN-RMS cells. Reintroducing constitutively activated NOTCH1-ΔE in cells with the SNAI2-CTCF peak deleted restored cell-viability. Ablation of SNAI2 using CRISPR/Cas9 reagents resulted in the loss of majority of RD and SMS-CTR FN-RMS cells. However, the few surviving clones that repopulate cultures have recovered NOTCH1. Cells that re-establish NOTCH1 expression after SNAI2 ablation are unable to differentiate robustly as SNAI2 shRNA knockdown cells; yet, SNAI2-ablated cells continued to be exquisitely sensitive to ionizing radiation. Thus, we have uncovered a novel mechanism by which SNAI2 and CTCF maintenance of a sub-TAD boundary promotes rather than represses NOTCH1 expression. Further, we demonstrate that SNAI2 suppression of apoptosis post-radiation is independent of SNAI2/NOTCH1 effects on self-renewal and differentiation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02707306
Volume :
43
Issue :
11
Database :
Academic Search Index
Journal :
Molecular & Cellular Biology
Publication Type :
Academic Journal
Accession number :
173719668
Full Text :
https://doi.org/10.1080/10985549.2023.2256640