Matrix stiffness induces a tumorigenic phenotype in mammary epithelium through changes in chromatin accessibility

被引:0
|
作者
Ryan S. Stowers
Anna Shcherbina
Johnny Israeli
Joshua J. Gruber
Julie Chang
Sungmin Nam
Atefeh Rabiee
Mary N. Teruel
Michael P. Snyder
Anshul Kundaje
Ovijit Chaudhuri
机构
[1] Stanford University,Department of Mechanical Engineering
[2] Stanford University,Department of Biological Data Science
[3] Stanford University,Department of Genetics
[4] Stanford University,Department of Physics
[5] Stanford University,Department of Medicine, Oncology Division
[6] Stanford University,Department of Bioengineering
[7] Stanford University,Department of Chemical and Systems Biology
[8] Stanford University,Department of Computer Science
来源
Nature Biomedical Engineering | 2019年 / 3卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
In breast cancer, the increased stiffness of the extracellular matrix is a key driver of malignancy. Yet little is known about the epigenomic changes that underlie the tumorigenic impact of extracellular matrix mechanics. Here, we show in a three-dimensional culture model of breast cancer that stiff extracellular matrix induces a tumorigenic phenotype through changes in chromatin state. We found that increased stiffness yielded cells with more wrinkled nuclei and with increased lamina-associated chromatin, that cells cultured in stiff matrices displayed more accessible chromatin sites, which exhibited footprints of Sp1 binding, and that this transcription factor acts along with the histone deacetylases 3 and 8 to regulate the induction of stiffness-mediated tumorigenicity. Just as cell culture on soft environments or in them rather than on tissue-culture plastic better recapitulates the acinar morphology observed in mammary epithelium in vivo, mammary epithelial cells cultured on soft microenvironments or in them also more closely replicate the in vivo chromatin state. Our results emphasize the importance of culture conditions for epigenomic studies, and reveal that chromatin state is a critical mediator of mechanotransduction.
引用
收藏
页码:1009 / 1019
页数:10
相关论文
共 41 条
  • [1] Matrix stiffness induces a tumorigenic phenotype in mammary epithelium through changes in chromatin accessibility
    Stowers, Ryan S.
    Shcherbina, Anna
    Israeli, Johnny
    Gruber, Joshua J.
    Chang, Julie
    Nam, Sungmin
    Rabiee, Atefeh
    Teruel, Mary N.
    Snyder, Michael P.
    Kundaje, Anshul
    Chaudhuri, Ovijit
    NATURE BIOMEDICAL ENGINEERING, 2019, 3 (12) : 1009 - 1019
  • [2] Extracellular matrix stiffness and composition together regulate malignancy of the mammary epithelium
    Chaudhuri, O.
    Koshy, S.
    Cunha, C.
    Mooney, D.
    MOLECULAR BIOLOGY OF THE CELL, 2013, 24
  • [3] Tamoxifen induces pleiotrophic changes in mammary stroma resulting in suppression of tumorigenic phenotypes
    Mailer, Ori
    Hattar, Rhonda
    Hansen, Kirk
    Hedman, Karla
    Lucia, Scott
    Wilson, Storey
    Schedin, Pepper
    CANCER RESEARCH, 2009, 69
  • [4] Extracellular matrix stiffness and composition jointly regulate the induction of malignant phenotypes in mammary epithelium
    Ovijit Chaudhuri
    Sandeep T. Koshy
    Cristiana Branco da Cunha
    Jae-Won Shin
    Catia S. Verbeke
    Kimberly H. Allison
    David J. Mooney
    Nature Materials, 2014, 13 : 970 - 978
  • [5] Extracellular matrix stiffness and composition jointly regulate the induction of malignant phenotypes in mammary epithelium
    Chaudhuri, Ovijit
    Koshy, Sandeep T.
    da Cunha, Cristiana Branco
    Shin, Jae-Won
    Verbeke, Catia S.
    Allison, Kimberly H.
    Mooney, David J.
    NATURE MATERIALS, 2014, 13 (10) : 970 - 978
  • [6] Maternal obesity driven changes in collagen linearity of breast extracellular matrix induces invasive mammary epithelial cell phenotype
    Amens, Jensen N.
    Bahcecioglu, Gokhan
    Dwyer, Kiera
    Yue, Xiaoshan S.
    Stack, M. Sharon
    Hilliard, Tyvette S.
    Zorlutuna, Pinar
    BIOMATERIALS, 2023, 297
  • [7] Increased Matrix Stiffness Induces a Fibrogenic Phenotype in Human Colonic Mesenchymal Cells
    Blanco, Luz P.
    Johnson, Laura
    Sauder, Kay L.
    Rieder, Florian
    Fiocchi, Claudio
    Liu, Fei
    Mih, Justin
    Tschumperlin, Daniel
    Higgins, Peter D.
    GASTROENTEROLOGY, 2010, 138 (05) : S752 - S752
  • [8] Matrix stiffness changes affect astrocyte phenotype in an in vitro injury model
    Hu, Yan
    Huang, Guoyou
    Tian, Jin
    Qiu, Jinbin
    Jia, Yuanbo
    Feng, Dayun
    Wei, Zhao
    Li, Sidi
    Xu, Feng
    NPG ASIA MATERIALS, 2021, 13 (01)
  • [9] Matrix stiffness changes affect astrocyte phenotype in an in vitro injury model
    Yan Hu
    Guoyou Huang
    Jin Tian
    Jinbin Qiu
    Yuanbo Jia
    Dayun Feng
    Zhao Wei
    Sidi Li
    Feng Xu
    NPG Asia Materials, 2021, 13
  • [10] Mitochondrial Stress Induces Plant Resistance Through Chromatin Changes
    Lopez Sanchez, Ana
    Hernandez Luelmo, Sofia
    Izquierdo, Yovanny
    Lopez, Bran
    Cascon, Tomas
    Castresana, Carmen
    FRONTIERS IN PLANT SCIENCE, 2021, 12