SETD2 regulates chromatin accessibility and transcription to suppress lung tumorigenesis

被引:5
|
作者
Xie, Yuchen [1 ,2 ]
Sahin, Merve [3 ,4 ]
Wakamatsu, Toru [1 ]
Inoue-Yamauchi, Akane [1 ]
Zhao, Wanming [1 ]
Han, Song [1 ]
Nargund, Amrita M. [1 ]
Yang, Shaoyuan [1 ]
Lyu, Yang [5 ]
Hsieh, James J. [5 ]
Leslie, Christina S. [3 ]
Cheng, Emily H. [1 ,6 ,7 ,8 ]
机构
[1] Mem Sloan Kettering Canc Ctr MSKCC, Human Oncol & Pathogenesis Program, New York, NY USA
[2] Gerstner Sloan Kettering Grad Sch Biomed Sci, New York, NY USA
[3] MSKCC, Computat & Syst Biol Program, New York, NY USA
[4] Triinst Training Program Computat Biol & Med, New York, NY USA
[5] Washington Univ, Dept Med, Mol Oncol, St Louis, MO USA
[6] MSKCC, Dept Pathol & Lab Med, New York, NY USA
[7] Weill Cornell Med Coll, New York, NY USA
[8] Mem Sloan Kettering Canc Ctr, 1275 York Ave, Box 20, New York, NY 10065 USA
关键词
HISTONE EXCHANGE; TUMOR-SUPPRESSOR; GENE-EXPRESSION; EMBRYONIC STEM; CANCER; METHYLATION; HYPB/SETD2; ENHANCERS; REPAIR; PRC2;
D O I
10.1172/jci.insight.154120
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
SETD2, a H3K36 trimethyltransferase, is the most frequently mutated epigenetic modifier in lung adenocarcinoma, with a mutation frequency of approximately 9%. However, how SETD2 loss of function promotes tumorigenesis remains unclear. Using conditional Setd2-KO mice, we demonstrated that Setd2 deficiency accelerated the initiation of KrasG12D-driven lung tumorigenesis, increased tumor burden, and significantly reduced mouse survival. An integrated chromatin accessibility and transcriptome analysis revealed a potentially novel tumor suppressor model of SETD2 in which SETD2 loss activates intronic enhancers to drive oncogenic transcriptional output, including the KRAS transcriptional signature and PRC2-repressed targets, through regulation of chromatin accessibility and histone chaperone recruitment. Importantly, SETD2 loss sensitized KRAS-mutant lung cancer to inhibition of histone chaperones, the FACT complex, or transcriptional elongation both in vitro and in vivo. Overall, our studies not only provide insight into how SETD2 loss shapes the epigenetic and transcriptional landscape to promote tumorigenesis, but they also identify potential therapeutic strategies for SETD2 mutant cancers.
引用
收藏
页数:22
相关论文
共 50 条
  • [1] SETD2 regulates gene transcription patterns and is associated with radiosensitivity in lung adenocarcinoma
    Zeng, Zihang
    Zhang, Jianguo
    Li, Jiali
    Li, Yangyi
    Huang, Zhengrong
    Han, Linzhi
    Xie, Conghua
    Gong, Yan
    FRONTIERS IN GENETICS, 2022, 13
  • [2] Dual Chromatin and Cytoskeletal Remodeling by SETD2
    Park, In Young
    Powell, Reid T.
    Tripathi, Durga Nand
    Dere, Ruhee
    Ho, Thai H.
    Blasius, T. Lynne
    Chiang, Yun-Chen
    Davis, Ian J.
    Fahey, Catherine C.
    Hacker, Kathryn E.
    Verhey, Kristen J.
    Bedford, Mark T.
    Jonasch, Eric
    Rathmell, W. Kimryn
    Walker, Cheryl Lyn
    CELL, 2016, 166 (04) : 950 - 962
  • [4] A role for SETD2 loss in tumorigenesis through DNA methylation dysregulation
    Javaid, Hira
    Barberis, Alessandro
    Chervova, Olga
    Nassiri, Isar
    Voloshin, Vitaly
    Sato, Yusuke
    Ogawa, Seishi
    Fairfax, Benjamin
    Buffa, Francesca
    Humphrey, Timothy C. C.
    BMC CANCER, 2023, 23 (01)
  • [5] SETD2 Regulates Nuclear Division to Achieve Polyploidization in Megakaryocyte
    Chen, Lei
    Liu, Jingkun
    Chen, Kunying
    Su, Yanxun
    Lei, Ying
    Si, Jia
    Zhang, Jie
    Zhang, Zhaojun
    Zou, Weiguo
    Zhang, Xiaohui
    Rondina, Matthew T.
    Wang, Qian-Fei
    Wang, Qian-fei
    BLOOD, 2022, 140 : 5730 - 5731
  • [6] The histone methyltransferase SETD2 negatively regulates cell size
    Molenaar, Thom M.
    Malik, Muddassir
    Silva, Joana
    Liu, Ning Qing
    Haarhuis, Judith H., I
    Ambrosi, Christina
    Kwesi-Maliepaard, Eliza Mari
    van Welsem, Tibor
    Baubec, Tuncay
    Faller, William J.
    van Leeuwen, Fred
    JOURNAL OF CELL SCIENCE, 2022, 135 (19)
  • [7] A role for SETD2 loss in tumorigenesis through DNA methylation dysregulation
    Hira Javaid
    Alessandro Barberis
    Olga Chervova
    Isar Nassiri
    Vitaly Voloshin
    Yusuke Sato
    Seishi Ogawa
    Benjamin Fairfax
    Francesca Buffa
    Timothy C. Humphrey
    BMC Cancer, 23
  • [8] The histone methyltransferase SETD2 regulates HIV expression and latency
    Bussey-Sutton, Cameron R.
    Ward, Airlie
    Fox, Joshua A.
    Turner, Anne-Marie W.
    Peterson, Jackson J.
    Emery, Ann
    Longoria, Arturo R.
    Gomez-Martinez, Ismael
    Jones, Corbin
    Hepperla, Austin
    Margolis, David M.
    Strahl, Brian D.
    Browne, Edward P.
    PLOS PATHOGENS, 2024, 20 (06)
  • [9] Epigenotype-genotype-phenotype correlations in SETD1A and SETD2 chromatin disorders
    Lee, Sunwoo
    Menzies, Lara
    Hay, Eleanor
    Ochoa, Eguzkine
    Docquier, France
    Rodger, Fay
    Deshpande, Charulata
    Foulds, Nicola
    Jacquemont, Sebastien
    Jizi, Khadije
    Kraus, Alison
    Wemmenhove-Lohner, Katharina
    Morrison, Patrick J.
    Popp, Bernt
    Richardson, Ruth
    van Haeringen, Arie
    Rodriguez, Jose-Ezequiel Martin
    Toribio, Ana
    Li, Fudong
    Jones, Wendy
    Sansbury, Francis H.
    Maher, Eamonn
    EUROPEAN JOURNAL OF HUMAN GENETICS, 2024, 32 : 459 - 460
  • [10] Epigenotype-genotype-phenotype correlations in SETD1A and SETD2 chromatin disorders
    Lee, Sunwoo
    Menzies, Lara
    Hay, Eleanor
    Ochoa, Eguzkine
    Docquier, France
    Rodger, Fay
    Deshpande, Charu
    Foulds, Nicola C.
    Jacquemont, Sebastien
    Jizi, Khadije
    Kiep, Henriette
    Kraus, Alison
    Loehner, Katharina
    Morrison, Patrick J.
    Popp, Bernt
    Richardson, Ruth
    van Haeringen, Arie
    Martin, Ezequiel
    Toribio, Ana
    Li, Fudong
    Jones, Wendy D.
    Sansbury, Francis H.
    Maher, Eamonn R.
    HUMAN MOLECULAR GENETICS, 2023, 32 (22) : 3123 - 3134