ATRX guards against aberrant differentiation in mesenchymal progenitor cells

Author:

Fang Yan12,Barrows Douglas3,Dabas Yakshi2,Carroll Thomas S3,Singer Sam4,Tap William D1,Nacev Benjamin A567ORCID

Affiliation:

1. Department of Medicine, Memorial Sloan Kettering Cancer Center , New York , NY10065, USA

2. Laboratory of Chromatin Biology and Epigenetics, The Rockefeller University , New York , NY 10065, USA

3. Bioinformatics Resource Center, The Rockefeller University , New York , NY10065, USA

4. Department of Surgery, Memorial Sloan Kettering Cancer Center , New York , NY10065, USA

5. Department of Medicine, University of Pittsburgh , Pittsburgh , PA 15213, USA

6. Department of Pathology, University of Pittsburgh , Pittsburgh , PA 15213, USA

7. UPMC Hillman Cancer Center , Pittsburgh , PA 15213, USA

Abstract

Abstract Alterations in the tumor suppressor ATRX are recurrently observed in mesenchymal neoplasms. ATRX has multiple epigenetic functions including heterochromatin formation and maintenance and regulation of transcription through modulation of chromatin accessibility. Here, we show in murine mesenchymal progenitor cells (MPCs) that Atrx deficiency aberrantly activated mesenchymal differentiation programs. This includes adipogenic pathways where ATRX loss induced expression of adipogenic transcription factors and enhanced adipogenic differentiation in response to differentiation stimuli. These changes are linked to loss of heterochromatin near mesenchymal lineage genes together with increased chromatin accessibility and gains of active chromatin marks. We additionally observed depletion of H3K9me3 at transposable elements, which are derepressed including near mesenchymal genes where they could serve as regulatory elements. Finally, we demonstrated that loss of ATRX in a mesenchymal malignancy, undifferentiated pleomorphic sarcoma, results in similar epigenetic disruption and de-repression of transposable elements. Together, our results reveal a role for ATRX in maintaining epigenetic states and transcriptional repression in mesenchymal progenitors and tumor cells and in preventing aberrant differentiation in the progenitor context.

Funder

Damon Runyon Cancer Research Foundation

NIH

Connective Tissue Oncology Society

Publisher

Oxford University Press (OUP)

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