H3K27me3 conditions chemotolerance in triple-negative breast cancer

被引:63
|
作者
Marsolier, Justine [1 ,2 ]
Prompsy, Pacome [1 ,2 ]
Durand, Adeline [1 ,2 ]
Lyne, Anne-Marie [3 ]
Landragin, Camille [1 ,2 ]
Trouchet, Amandine [1 ,4 ]
Bento, Sabrina Tenreira [3 ]
Eisele, Almut [3 ]
Foulon, Sophie [5 ]
Baudre, Lea [1 ,2 ]
Grosselin, Kevin [5 ,6 ,11 ]
Bohec, Mylene [4 ,7 ]
Baulande, Sylvain [4 ,7 ]
Dahmani, Ahmed [2 ]
Sourd, Laura [2 ]
Letouze, Eric [8 ]
Salomon, Anne-Vincent [9 ,10 ]
Marangoni, Elisabetta [2 ]
Perie, Leila [3 ]
Vallot, Celine [1 ,2 ]
机构
[1] PSL Univ, Inst Curie, CNRS UMR3244, Paris, France
[2] PSL Univ, Inst Curie, Translat Res Dept, Paris, France
[3] PSL Univ, Sorbonne Univ, CNRS UMR168, Inst Curie, Paris, France
[4] PSL Univ, Inst Curie, Single Cell Initiat, Paris, France
[5] PSL Univ, ESPCI Paris, CNRS UMR8231, Paris, France
[6] HiFiBio SAS, Paris, France
[7] PSL Univ, Inst Curie, Genom Excellence ICGex Platform, Paris, France
[8] Sorbonne Univ, Ctr Rech Cordeliers, Funct Genom Solid Tumors Lab, Inserm,USPC,Paris Descartes Univ,Paris Diderot Un, Paris, France
[9] PSL Res Univ, Inst Curie, Dept Pathol Genet & Immunol, Paris, France
[10] PSL Res Univ, Inst Curie, INSERM U934, Paris, France
[11] Broad Inst MIT & Harvard, Cambridge, MA 02142 USA
基金
欧洲研究理事会;
关键词
TO-MESENCHYMAL TRANSITION; SOMATIC MUTATIONS; CELL PLASTICITY; CHROMATIN; METHYLATION; METASTASIS; RESISTANCE; INHIBITOR; GENES; EZH2;
D O I
10.1038/s41588-022-01047-6
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
The persistence of cancer cells resistant to therapy remains a major clinical challenge. In triple-negative breast cancer, resistance to chemotherapy results in the highest recurrence risk among breast cancer subtypes. The drug-tolerant state seems largely defined by nongenetic features, but the underlying mechanisms are poorly understood. Here, by monitoring epigenomes, transcriptomes and lineages with single-cell resolution, we show that the repressive histone mark H3K27me3 (trimethylation of histone H3 at lysine 27) regulates cell fate at the onset of chemotherapy. We report that a persister expression program is primed with both H3K4me3 (trimethylation of histone H3 at lysine 4) and H3K27me3 in unchallenged cells, with H3K27me3 being the lock to its transcriptional activation. We further demonstrate that depleting H3K27me3 enhances the potential of cancer cells to tolerate chemotherapy. Conversely, preventing H3K27me3 demethylation simultaneously to chemotherapy inhibits the transition to a drug-tolerant state, and delays tumor recurrence in vivo. Our results highlight how chromatin landscapes shape the potential of cancer cells to respond to initial therapy. Single-cell multiomic profiling of triple-negative breast cancer samples treated with capecitabine shows that H3K27me3 regulates a persister cell state. Blocking H3K27me3 demethylation inhibits the transition to a drug-tolerant state and delays tumor recurrence.
引用
收藏
页码:459 / +
页数:26
相关论文
共 50 条
  • [21] Identification of coexistence of DNA methylation and H3K27me3 specifically in cancer cells as a promising target for epigenetic therapy
    Takeshima, Hideyuki
    Wakabayashi, Mika
    Hattori, Naoko
    Yamashita, Satoshi
    Ushijima, Toshikazu
    CARCINOGENESIS, 2015, 36 (02) : 192 - 201
  • [22] Decreased Methylation Level of H3K27me3 Increases Seizure Susceptibility
    Wang, Zhongcheng
    Zhang, Yusong
    Fang, Jian
    Yu, Fang
    Heng, Duanhe
    Fan, Yuanteng
    Xu, Jian
    Peng, Biwen
    Liu, Wanhong
    Han, Song
    He, Xiaohua
    MOLECULAR NEUROBIOLOGY, 2017, 54 (09) : 7343 - 7352
  • [23] Genome-Wide Analysis of H3K27me3 in Porcine Embryonic Muscle Development
    Tan, Baohua
    Wang, Sheng
    Wang, Shanshan
    Zeng, Jiekang
    Hong, Linjun
    Li, Zicong
    Yang, Jie
    Cai, Gengyuan
    Zheng, Enqin
    Wu, Zhenfang
    Gu, Ting
    FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY, 2021, 9
  • [24] Reduction of two histone marks, H3k9me3 and H3k27me3 by epidrug induces neuroendocrine differentiation in prostate cancer
    Lee, Eunsohl
    Wang, Jingcheng
    Jung, Younghun
    Cackowski, Frank C.
    Taichman, Russell S.
    JOURNAL OF CELLULAR BIOCHEMISTRY, 2018, 119 (04) : 3697 - 3705
  • [25] Loss of HP1 causes depletion of H3K27me3 from facultative heterochromatin and gain of H3K27me2 at constitutive heterochromatin
    Jamieson, Kirsty
    Wiles, Elizabeth T.
    McNaught, Kevin J.
    Sidoli, Simone
    Leggett, Neena
    Shao, Yanchun
    Garcia, Benjamin A.
    Selker, Eric U.
    GENOME RESEARCH, 2016, 26 (01) : 97 - 107
  • [26] Pleiotropic Functions of H3K27Me3 Demethylases in Immune Cell Differentiation
    Bosselut, Remy
    TRENDS IN IMMUNOLOGY, 2016, 37 (02) : 102 - 113
  • [27] Regulation of Breast Cancer-Induced Osteoclastogenesis by MacroH2A1.2 Involving EZH2-Mediated H3K27me3
    Kim, Jinman
    Shin, Yonghwan
    Lee, Sunyoung
    Kim, Miyeong
    Punj, Vasu
    Lu, Jason F.
    Shin, Hongin
    Kim, Kyunghwan
    Ulmer, Tobias S.
    Koh, Jungmin
    Jeong, Daewon
    An, Woojin
    CELL REPORTS, 2018, 24 (01): : 224 - 237
  • [28] Evaluation of Histone 3 Lysine 27 Trimethylation (H3K27me3) and Enhancer of Zest 2 (EZH2) in Pediatric Glial and Glioneuronal Tumors Shows Decreased H3K27me3 in H3F3A K27M Mutant Glioblastomas
    Venneti, Sriram
    Garimella, Mihir T.
    Sullivan, Lisa M.
    Martinez, Daniel
    Huse, Jason T.
    Heguy, Adriana
    Santi, Mariarita
    Thompson, Craig B.
    Judkins, Alexander R.
    BRAIN PATHOLOGY, 2013, 23 (05) : 558 - 564
  • [29] Loss of H3K27me3 expression in canine nerve sheath tumors
    Tekavec, Kristina
    Svara, Tanja
    Knific, Tanja
    Mlakar, Jernej
    Gombac, Mitja
    Cantile, Carlo
    FRONTIERS IN VETERINARY SCIENCE, 2022, 9
  • [30] Distinct features of H3K4me3 and H3K27me3 chromatin domains in pre-implantation embryos
    Liu, Xiaoyu
    Wang, Chenfei
    Liu, Wenqiang
    Li, Jingyi
    Li, Chong
    Kou, Xiaochen
    Chen, Jiayu
    Zhao, Yanhong
    Gao, Haibo
    Wang, Hong
    Zhang, Yong
    Gao, Yawei
    Gao, Shaorong
    NATURE, 2016, 537 (7621) : 558 - +