Repression of Ah receptor and induction of transforming growth factor-β genes in DEN-induced mouse liver tumors

被引:24
|
作者
Peng, Li [1 ]
Mayhew, Christopher N. [2 ]
Schnekenburger, Michael [1 ]
Knudsen, Erik S. [2 ]
Puga, Alvaro [1 ]
机构
[1] Univ Cincinnati, Med Ctr, Dept Environm Hlth, Ctr Environm Genet, Cincinnati, OH 45267 USA
[2] Univ Cincinnati, Med Ctr, Dept Cell & Canc Biol, Cincinnati, OH 45267 USA
关键词
Ah receptor; tumor suppressor genes; TGF-beta; hepatocellular carcinoma;
D O I
10.1016/j.tox.2008.01.002
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The aryl hydrocarbon receptor (AHR) is a ligand-activated transcription factor that mediates the biologic and toxic effects of its xenobiotic ligands. In recent years it has become evident that in the absence of ligand the AHR promotes cell cycle progression and that its activation by high-affinity ligands results in interactions with the retinoblastoma protein (RB) that lead to perturbation of the cell cycle, G(0)/G(1) arrest, diminished capacity for DNA replication and inhibition of cell proliferation. Hence, the AHR has diametrically opposed pro-proliferative and anti-proliferative functions that have yet to be reconciled at the molecular level. Work from our own and from other laboratories suggests that the AHR may function as a tumor suppressor gene that becomes silenced in the process of tumor formation. To develop preliminary support for a more thorough examination of this hypothesis we characterized the expression levels of various tumor suppressor genes, transforming growth factor-beta (Tgfb) genes and the Ahr gene in liver tumor samples from mice with a liver-specific RB ablation and their wild-type littermates. In tumors arising in RB-positive livers, Cdkn2d and Tgfb1 were repressed and Cdkn2c, Tgfb2, Tgfb3 and Pail were induced, whereas in RB-negative tumors, only Cdkn2c and Tgfb3 were induced. Ahr was significantly repressed in tumors from both sets of mice, supporting the concept that Ahr silencing may be associated with cancer progression. (C) 2008 Elsevier Ireland Ltd. All rights reserved.
引用
收藏
页码:242 / 247
页数:6
相关论文
共 50 条
  • [41] Differential induction of early response genes by adrenomedullin and transforming growth factor-β1 in human lung cancer cells
    Kane, S
    Prentice, MA
    Mariano, JM
    Cuttitta, F
    Jakowlew, SB
    ANTICANCER RESEARCH, 2002, 22 (03) : 1433 - 1444
  • [42] Induction of latency-associated peptide (transforming growth factor-β1) expression on CD4+T cells reduces Toll-like receptor 4 ligand-induced tumour necrosis factor-α production in a transforming growth factor-β-dependent manner
    Boswell, Sandra
    Sharif, Shayan
    Alisa, Akeel
    Pereira, Stephen P.
    Williams, Roger
    Behboudi, Shahriar
    IMMUNOLOGY, 2011, 133 (03) : 278 - 287
  • [43] Increased type II transforming growth factor-β receptor expression in liver cells during cholesterol challenge
    Baccante, G
    Mincione, G
    Di Febbo, C
    Coppa, A
    Angelucci, D
    Lapenna, D
    Cuccurullo, F
    Colletta, G
    Porreca, E
    ATHEROSCLEROSIS, 2000, 152 (01) : 51 - 57
  • [44] Serotonin-induced hepatocyte mitogenesis is mediated by epidermal growth factor /transforming growth factor-α receptor tyrosine kinase pathway
    Naito, Kota
    Moteki, Hajime
    Kimura, Mitsutoshi
    Ogihara, Masahiko
    JOURNAL OF PHARMACOLOGICAL SCIENCES, 2017, 133 (03) : S199 - S199
  • [45] Amphiregulin, an Epidermal Growth Factor Receptor Ligand, Plays an Essential Role in the Pathogenesis of Transforming Growth Factor-β-induced Pulmonary Fibrosis
    Zhou, Yang
    Lee, Jae-Young
    Lee, Chang-Min
    Cho, Won-Kyung
    Kang, Min-Jong
    Koff, Jonathan L.
    Yoon, Pyeong-Oh
    Chae, Jeiwook
    Park, Han-Oh
    Elias, Jack A.
    Lee, Chun Geun
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2012, 287 (50) : 41991 - 42000
  • [46] Soluble transforming growth factor-β1 receptor II might inhibit transforming growth factor-β-induced myofibroblast differentiation and improve ischemic cardiac function after myocardial infarction in rats
    Lian, Ruiqing
    Chen, Yuejie
    Xu, Zenglu
    Zhang, Xiaodong
    CORONARY ARTERY DISEASE, 2010, 21 (06) : 369 - 377
  • [47] Epithelial-mesenchymal transition induced by transforming growth factor-β1 in mouse tracheal epithelial cells
    Kuroishi, Shigeki
    Suda, Takafumi
    Fujisawa, Tomoyuki
    Ide, Kyotaro
    Inui, Naoki
    Nakamura, Yutaro
    Nakamura, Hirotoshi
    Chida, Kingo
    RESPIROLOGY, 2009, 14 (06) : 828 - 837
  • [48] Localization of acidic fibroblast growth factor, fibroblast growth factor receptor-4, transforming growth factor-α, and epidermal growth factor receptor in human endocrine cells of the gut and related tumors:: An immunohistochemical study
    La Rosa, S
    Uccella, S
    Capella, C
    Chiaravalli, AM
    Sessa, F
    APPLIED IMMUNOHISTOCHEMISTRY, 1998, 6 (04): : 199 - 208
  • [49] Chimeric antigen receptors designed to overcome transforming growth factor-β-mediated repression in the adoptive T-cell therapy of solid tumors
    Hartley, Jordan
    Abken, Hinrich
    CLINICAL & TRANSLATIONAL IMMUNOLOGY, 2019, 8 (06)
  • [50] Prevention of CCl4-induced liver cirrhosis by ribbon antisense to transforming growth factor-β1
    Doh, Kyung-Oh
    Jung, Hyun-Kyung
    Moon, Ik-Jae
    Kang, Hyun-Gu
    Park, Jeong-Hoh
    Park, Jong-Gu
    INTERNATIONAL JOURNAL OF MOLECULAR MEDICINE, 2008, 21 (01) : 33 - 39