PU.1 Eviction at Lymphocyte-Specific Chromatin Domains Mediates Glucocorticoid Response in Acute Lymphoblastic Leukemia

Author:

Jing Duohui1ORCID,Beck Dominik2,Cao Honghui1,Tian Feng3,Huang Yizhou4,Zhao Han5,Tai Xiaolu6,XU WENQIAN1,Kosasih Hansen4,Kealy David7,Bridge Katherine7,Zhao Weiye8,Holding Andrew8,Dowle Adam9,Taylor Samuel10,Song Gaoxian1,Fajardo Diego2,Walia Yashna4,Wang Meng6ORCID,Zhang Chao11ORCID,Wang Jin1,Mi Jian-Qing12,Lock Richard13,de Bock Charles14ORCID

Affiliation:

1. Shanghai Institute of Hematology, State Key Laboratory of Medical Genomics, National Research Center for Translational Medicine at Shanghai, Ruijin Hospital Affiliated to Shanghai Jiao Tong Universi

2. Centre for Health Technologies and the School of Biomedical Engineering, University of Technology

3. School of Medicine, Institute of Biomedical Informatics, Hebei University of Engineering, Handan, Hebei Province, 056038, China

4. Children’s Cancer Institute, Lowy Cancer Research Centre, School of Clinical Medicine, UNSW Medicine & Health, UNSW Centre for Childhood Cancer Research, UNSW Sydney

5. Shanghai Institute of Hematology, State Key Laboratory of Medical Genomics, National Research Center for Translational Medicine at Shanghai, Ruijin Hospital, Shanghai Jiao Tong University Sch

6. Department of Plastic and Reconstructive Surgery, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China

7. Centre for Blood Research, University of York

8. York Biomedical Research Institute, University of York

9. Metabolomics & Proteomics Laboratory, Bioscience Technology Facility, Department of Biology, University of York

10. Department of Cell Biology, Albert Einstein College of Medicine

11. Shanghai JiaoTong University

12. State Key Laboratory of Medical Genomics, Shanghai Institute of Hematology, Rui Jin Hospital Affiliated to Shanghai Jiao Tong University (SJTU) School of Medicine, 197 Rui Jin Road II, Shanghai

13. Children's Cancer Institute

14. Children's Cancer Institute, University of New South Wales

Abstract

Abstract The epigenetic landscape plays a critical role in the onset and evolution of various malignancies, but its therapeutic utility remains underutilized. Glucocorticoids are an essential part of many multi-agent treatment regimens for lymphoid malignancies. However, the emergence of glucocorticoid resistance is a significant barrier to cure, which is in part due to epigenetic alterations, including aberrant chromatin accessibility and hypermethylation at lymphocyte-specific glucocorticoid-response elements (GREs). To gain a deeper understanding of regulatory mechanisms leading to these epigenetic alterations, we conducted a multi-omics study, including chromosome conformation capture sequencing (HiC), to examine changes in the 3D genome structure following the in vivo treatment of acute lymphoblastic leukemia (ALL) patient-derived xenografts (PDXs) with glucocorticoid. We found that glucocorticoid treatment led to distinct patterns of topologically associated domains (TADs) in glucocorticoid sensitive compared to resistant PDXs. Furthermore, we show that these TADs were primed by the development-related pioneer transcription factor PU.1, which extensively interacts with the glucocorticoid receptor (GR) exclusively in glucocorticoid-sensitive ALL PDXs. An integrative analysis of rapid immunoprecipitation mass spectrometry of endogenous protein (RIME) and ChIP-seq revealed that PU.1 binding was associated with lymphocyte-specific activation of GREs and GRE-interacting super-enhancers. The PU.1-associated TADs modulated epigenetic marks, and particularlythe eviction of PU.1 promoted GR binding and the expression of signature genes, including BIM, ZBTB16 and RASA1, mediating glucocorticoid-induced apoptosis in ALL. These findings were phenocopied using a PU.1 inhibitor DB2313 to restore glucocorticoid sensitivity in ALL. Taken together, this study identified a new epigenetic pathway integrating PU.1 priming and PU.1-GR interaction which ultimately leads to PU.1 eviction in ALL. This pathway provides the first link between the activity of a lineage-specific transcription factor and epigenetic modulators mediating the response to glucocorticoids and thus offers a new avenue to translate fundamental epigenetic research into the clinic.

Publisher

Research Square Platform LLC

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