Targeting SWI/SNF ATPases in H3.3K27M diffuse intrinsic pontine gliomas

Author:

Mota Mateus12,Sweha Stefan R.12,Pun Matt1234,Natarajan Siva Kumar12,Ding Yujie12,Chung Chan5ORCID,Hawes Debra6,Yang Fusheng6,Judkins Alexander R.6,Samajdar Susanta7,Cao Xuhong8,Xiao Lanbo8,Parolia Abhijit8,Chinnaiyan Arul M.891011ORCID,Venneti Sriram12389

Affiliation:

1. Laboratory of Brain Tumor Metabolism and Epigenetics, Department of Pathology, University of Michigan, Ann Arbor, MI 48109

2. Chad Carr Pediatric Tumor Center, Department of Pediatrics, University of Michigan, Ann Arbor, MI 48109

3. Cellular and Molecular Biology Program, University of Michigan Medical School, Ann Arbor, MI 48109

4. Medical Scientist Training Program, University of Michigan Medical School, Ann Arbor, MI 48109

5. Department of New Biology, Daegu Gyeongbuk Institute of Science and Technology, Daegu 42988, Korea

6. Department of Pathology and Laboratory Medicine, Children’s Hospital Los Angeles, Keck School of Medicine University of Southern California, Los Angeles, CA 90027

7. Aurigene Discovery Technologies, Bengaluru, Karnataka 560100, India

8. Michigan Center for Translational Pathology, Department of Pathology, University of Michigan Medical School, Ann Arbor, MI 48109

9. Rogel Cancer Center, University of Michigan Medical School, Ann Arbor, MI 48109

10. Department of Urology, University of Michigan Medical School, Ann Arbor, MI 48109

11. HHMI, University of Michigan Medical School, Ann Arbor, MI 48109

Abstract

Diffuse midline gliomas (DMGs) including diffuse intrinsic pontine gliomas (DIPGs) bearing lysine-to-methionine mutations in histone H3 at lysine 27 (H3K27M) are lethal childhood brain cancers. These tumors harbor a global reduction in the transcriptional repressive mark H3K27me3 accompanied by an increase in the transcriptional activation mark H3K27ac. We postulated that H3K27M mutations, in addition to altering H3K27 modifications, reprogram the master chromatin remodeling switch/sucrose nonfermentable (SWI/SNF) complex. The SWI/SNF complex can exist in two main forms termed BAF and PBAF that play central roles in neurodevelopment and cancer. Moreover, BAF antagonizes PRC2, the main enzyme catalyzing H3K27me3. We demonstrate that H3K27M gliomas show increased protein levels of the SWI/SNF complex ATPase subunits SMARCA4 and SMARCA2, and the PBAF component PBRM1. Additionally, knockdown of mutant H3K27M lowered SMARCA4 protein levels. The proteolysis targeting chimera (PROTAC) AU-15330 that simultaneously targets SMARCA4, SMARCA2, and PBRM1 for degradation exhibits cytotoxicity in H3.3K27M but not H3 wild-type cells. AU-15330 lowered chromatin accessibility measured by ATAC-Seq at nonpromoter regions and reduced global H3K27ac levels. Integrated analysis of gene expression, proteomics, and chromatin accessibility in AU-15330-treated cells demonstrated reduction in the levels of FOXO1, a key member of the forkhead family of transcription factors. Moreover, genetic or pharmacologic targeting of FOXO1 resulted in cell death in H3K27M cells. Overall, our results suggest that H3K27M up-regulates SMARCA4 levels and combined targeting of SWI/SNF ATPases in H3.3K27M can serve as a potent therapeutic strategy for these deadly childhood brain tumors.

Funder

HHS | NIH | National Institute of Neurological Disorders and Stroke

HHS | NIH | National Cancer Institute

ChadTough Foundation

Alex's Lemonade Stand Foundation for Childhood Cancer

Hyundai Motor America | Hyundai Hope On Wheels

UM | Rogel Cancer Center, University of Michigan

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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