A Smad3 and TTF-1/NKX2-1 complex regulates Smad4-independent gene expression

被引:0
|
作者
Kazunobu Isogaya
Daizo Koinuma
Shuichi Tsutsumi
Roy-Akira Saito
Keiji Miyazawa
Hiroyuki Aburatani
Kohei Miyazono
机构
[1] Graduate School of Medicine,Department of Molecular Pathology
[2] The University of Tokyo,Genome Science Division
[3] Research Center for Advanced Science and Technology (RCAST),Department of Respiratory Medicine
[4] The University of Tokyo,Department of Biochemistry
[5] Graduate School of Medicine,undefined
[6] The University of Tokyo,undefined
[7] Interdisciplinary Graduate School of Medicine and Engineering,undefined
[8] University of Yamanashi,undefined
来源
Cell Research | 2014年 / 24卷
关键词
ChIP-seq; NKX2-1; Smad3; Smad4; TTF-1; TGF-β;
D O I
暂无
中图分类号
学科分类号
摘要
Thyroid transcription factor-1 (TTF-1, also known as NKX2-1) is a tissue-specific transcription factor in lung epithelial cells. Although TTF-1 inhibits the epithelial-to-mesenchymal transition induced by transforming growth factor-β (TGF-β) in lung adenocarcinoma cells, the mechanism through which TTF-1 inhibits the functions of TGF-β is unknown. Here we show that TTF-1 disrupts the nuclear Smad3-Smad4 complex without affecting the nuclear localization of phospho-Smad3. Genome-wide analysis by chromatin immunoprecipitation followed by sequencing revealed that TTF-1 colocalizes with Smad3 on chromatin and alters Smad3-binding patterns throughout the genome, while TTF-1 generally inhibits Smad4 binding to chromatin. Moreover, Smad3 binds to chromatin together with TTF-1, but not with Smad4, at some Smad3-binding regions when TGF-β signaling is absent, and knockdown of Smad4 expression does not attenuate Smad3 binding in these regions. Thus, TTF-1 may compete with Smad4 for interaction with Smad3, and in the presence of TTF-1, Smad3 regulates the transcription of certain genes independently of Smad4. These findings provide a new model of regulation of TGF-β-Smad signaling by TTF-1.
引用
收藏
页码:994 / 1008
页数:14
相关论文
共 50 条
  • [31] USP7 Promotes TGF-β1 Signaling by De-Ubiquitinating Smad2/Smad3 in Pulmonary Fibrosis
    Tang, Fang
    Gong, Hongyan
    Ke, Tiantian
    Yang, Wenming
    Yang, Yuxuan
    Liu, Zhiyi
    DISCOVERY MEDICINE, 2024, 36 (187) : 1616 - 1626
  • [32] Structural basis for distinct roles of SMAD2 and SMAD3 in FOXH1 pioneer-directed TGF-β signaling
    Aragon, Eric
    Wang, Qiong
    Zou, Yilong
    Morgani, Sophie M.
    Ruiz, Lidia
    Kaczmarska, Zuzanna
    Su, Jie
    Torner, Carles
    Tian, Lin
    Hu, Jing
    Shu, Weiping
    Agrawal, Saloni
    Gomes, Tiago
    Marquez, Jose A.
    Hadjantonakis, Anna-Katerina
    Macias, Maria J.
    Massague, Joan
    GENES & DEVELOPMENT, 2019, 33 (21-22) : 1506 - 1524
  • [33] Regional expression of the homeobox gene NKX2-1 defines pallidal and interneuronal populations in the basal ganglia of amphibians
    González, A
    López, JM
    Sánchez-Camacho, C
    Marín, O
    NEUROSCIENCE, 2002, 114 (03) : 567 - 575
  • [34] Global gene expression profiling identifies ALDH2, CCNE1 and SMAD3 as potential prognostic markers in upper tract urothelial carcinoma
    Song Wu
    Jiahao Chen
    Pei Dong
    Shiqiang Zhang
    Yingying He
    Liang Sun
    Jialou Zhu
    Yanbing Cheng
    Xianxin Li
    Aifa Tang
    Yi Huang
    Yaoting Gui
    Chunxiao Liu
    Guosheng Yang
    Fangjian Zhou
    Zhiming Cai
    Rongfu Wang
    BMC Cancer, 14
  • [35] Galectin-1 suppresses α2(I) collagen through Smad3 in renal epithelial cells
    Okano, K.
    Uchida, K.
    Nitta, K.
    Hayashida, T.
    CELLULAR AND MOLECULAR LIFE SCIENCES, 2008, 65 (20) : 3304 - 3311
  • [36] Global gene expression profiling identifies ALDH2, CCNE1 and SMAD3 as potential prognostic markers in upper tract urothelial carcinoma
    Wu, Song
    Chen, Jiahao
    Dong, Pei
    Zhang, Shiqiang
    He, Yingying
    Sun, Liang
    Zhu, Jialou
    Cheng, Yanbing
    Li, Xianxin
    Tang, Aifa
    Huang, Yi
    Gui, Yaoting
    Liu, Chunxiao
    Yang, Guosheng
    Zhou, Fangjian
    Cai, Zhiming
    Wang, Rongfu
    BMC CANCER, 2014, 14
  • [37] Galectin-1 suppresses α2(I) collagen through Smad3 in renal epithelial cells
    K. Okano
    K. Uchida
    K. Nitta
    T. Hayashida
    Cellular and Molecular Life Sciences, 2008, 65 : 3304 - 3311
  • [38] Functional interaction between COL4A1/COL4A2 and SMAD3 risk loci for coronary artery disease
    Turner, Adam W.
    Nikpay, Majid
    Silva, Anada
    Lau, Paulina
    Martinuk, Amy
    Linseman, Tara A.
    Soubeyrand, Sebastien
    McPherson, Ruth
    ATHEROSCLEROSIS, 2015, 242 (02) : 543 - 552
  • [39] Astaxanthin prevents TGFβ1-induced pro-fibrogenic gene expression by inhibiting Smad3 activation in hepatic stellate cells
    Yang, Yue
    Kim, Bohkyung
    Park, Young-Ki
    Koo, Sung I.
    Lee, Ji-Young
    BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS, 2015, 1850 (01): : 178 - 185
  • [40] The differential role of Smad2 and Smad3 in the regulation of pro-fibrotic TGFβ1 responses in human proximal-tubule epithelial cells
    Phanish, MK
    Wahab, NA
    Colville-Nash, P
    Hendry, BM
    Dockrell, MEC
    BIOCHEMICAL JOURNAL, 2006, 393 : 601 - 607