Oncogenic Driver Genes and the Inflammatory Microenvironment Dictate Liver Tumor Phenotype

被引:42
|
作者
Matter, Matthias S. [1 ,2 ]
Marquardt, Jens U. [1 ,3 ]
Andersen, Jesper B. [1 ,4 ]
Quintavalle, Cristina [2 ]
Korokhov, Nikolay [1 ]
Stauffer, Jim K. [5 ]
Kaji, Kosuke [1 ]
Decaens, Thomas [1 ]
Quagliata, Luca [2 ]
Elloumi, Fathi [6 ]
Hoang, Tanya [2 ]
Molinolo, Alfredo [7 ]
Conner, Elizabeth A. [1 ]
Weber, Achim [8 ]
Heikenwalder, Mathias [9 ,10 ]
Factor, Valentina M. [1 ]
Thorgeirsson, Snorri S. [1 ]
机构
[1] NCI, Expt Carcinogenesis Lab, Ctr Canc Res, NIH, Bethesda, MD 20892 USA
[2] Univ Basel Hosp, Inst Pathol, CH-4003 Basel, Switzerland
[3] Johannes Gutenberg Univ Mainz, Dept Med 1, Mainz, Germany
[4] Univ Copenhagen, Biotech Res & Innovat Ctr, Copenhagen, Denmark
[5] NCI, Canc & Inflammat Program, Frederick, MD 21701 USA
[6] NCI, CCR, Leidos Inc, NIH, Bethesda, MD 20892 USA
[7] Natl Inst Dent & Craniofacial Res, Oral & Pharyngeal Canc Branch, NIH, Bethesda, MD USA
[8] Univ Zurich Hosp, Inst Surg Pathol, CH-8091 Zurich, Switzerland
[9] Tech Univ Munich, Helmholtz Zentrum Munchen, Inst Virol, D-80290 Munich, Germany
[10] German Canc Res Ctr, Div Chron Inflammat & Canc, Heidelberg, Germany
基金
美国国家卫生研究院;
关键词
HEPATOCELLULAR-CARCINOMA; EXPRESSION; PROGNOSIS; METASTASIS; RECURRENCE; MECHANISMS; PREDICTION; SURVIVAL;
D O I
10.1002/hep.28487
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
The majority of hepatocellular carcinoma develops in the background of chronic liver inflammation caused by viral hepatitis and alcoholic or nonalcoholic steatohepatitis. However, the impact of different types of chronic inflammatory microenvironments on the phenotypes of tumors generated by distinct oncogenes is largely unresolved. To address this issue, we generated murine liver tumors by constitutively active AKT-1 (AKT) and beta-catenin (CAT), followed by induction of chronic liver inflammation by 3,5-diethoxycarbonyl-1,4-dihydrocollidine (DDC) and carbon tetrachloride. Also, the impact of DDC-induced chronic liver inflammation was compared between two liver tumor models using a combination of AKT-CAT or AKT-NRAS(G12V). Treatment with DDC and carbon tetrachloride significantly facilitated the adenoma-to-carcinoma conversion and accelerated the growth of AKT-CAT tumors. Furthermore, DDC treatment altered the morphology of AKT-CAT tumors and caused loss of lipid droplets. Transcriptome analysis of AKT-CAT tumors revealed that cellular growth and proliferation were mainly affected by chronic inflammation and caused up-regulation of Cxcl16, Galectin-3, and Nedd9, among others. Integration with transcriptome profiles from human hepatocellular carcinomas further demonstrated that AKT-CAT tumors generated in the context of chronic liver inflammation showed enrichment of poor prognosis gene sets or decrease of good prognosis gene sets. In contrast, DDC had a more subtle effect on AKT-NRAS(G12V) tumors and primarily enhanced already existent tumor characteristics as supported by transcriptome analysis. However, it also reduced lipid droplets in AKT-NRAS(G12V) tumors. Conclusion: Our study suggests that liver tumor phenotype is defined by a combination of driving oncogenes but also the nature of chronic liver inflammation.
引用
收藏
页码:1888 / 1899
页数:12
相关论文
共 50 条
  • [11] Oncogenic KRAS and the inflammatory microenvironment in pancreatic cancer
    Zhang, Yaqing
    Yan, Wei
    Bednar, Filip
    Wan, Shanshan
    Collins, Meredith A.
    Evans, Rebecca A.
    Mathew, Esha
    Welling, Theodore H.
    Vonderheide, Robert H.
    di Magliano, Marina Pasca
    MOLECULAR CANCER RESEARCH, 2014, 12
  • [12] The Acidic Tumor Microenvironment as a Driver of Cancer
    Boedtkjer, Ebbe
    Pedersen, Stine F.
    ANNUAL REVIEW OF PHYSIOLOGY, VOL 82, 2020, 82 : 103 - 126
  • [13] Oncogenic Signal and Tumor Microenvironment in Hepatocellular Carcinoma
    Nishida, Naoshi
    Kudo, Masatoshi
    ONCOLOGY, 2017, 93 : 160 - 164
  • [14] Author Correction: A local tumor microenvironment acquired super-enhancer induces an oncogenic driver in colorectal carcinoma
    Royce W. Zhou
    Jia Xu
    Tiphaine C. Martin
    Alexis L. Zachem
    John He
    Sait Ozturk
    Deniz Demircioglu
    Ankita Bansal
    Andrew P. Trotta
    Bruno Giotti
    Berkley Gryder
    Yao Shen
    Xuewei Wu
    Saul Carcamo
    Kaitlyn Bosch
    Benjamin Hopkins
    Alexander Tsankov
    Randolph Steinhagen
    Drew R. Jones
    John Asara
    Jerry E. Chipuk
    Rachel Brody
    Steven Itzkowitz
    Iok In Christine Chio
    Dan Hasson
    Emily Bernstein
    Ramon E. Parsons
    Nature Communications, 14
  • [15] Liver Tumor Microenvironment
    Tsilimigras, Diamantis I.
    Ntanasis-Stathopoulos, Ioannis
    Moris, Dimitrios
    Pawlik, Timothy M.
    TUMOR MICROENVIRONMENTS IN ORGANS: FROM THE BRAIN TO THE SKIN, PT B, 2020, 1296 : 227 - 241
  • [16] Correlation of tumor mutational burden, tumor microenvironment and alterations of driver genes in patients with NSCLC: A retrospective analysis.
    Yu, Yao
    Lin, Rongbo
    He, Ning
    Yang, Yadong
    Jin, Ge
    Wang, Jianfei
    JOURNAL OF CLINICAL ONCOLOGY, 2019, 37 (15)
  • [17] Wnt signaling in the tumor microenvironment: A driver of brain tumor dynamics
    Suh, Han Na
    Choi, Gee Euhn
    LIFE SCIENCES, 2024, 358
  • [18] Oncogenic Kras modulates pancreas plasticity and the tumor microenvironment
    Velez-Delgado, Ashley
    Irizarry-Negron, Valerie
    Menjivar, Rosa
    Lazarus, Jenny
    Bollampally, Murali
    Steele, Nina
    Frankel, Timothy
    Bednar, Fillip
    Zhang, Yaqing
    di Magliano, Marina Pasca
    CANCER RESEARCH, 2019, 79 (24)
  • [19] Modulation of Lymphocyte Functions in the Microenvironment by Tumor Oncogenic Pathways
    Seliger, Barbara
    Massa, Chiara
    FRONTIERS IN IMMUNOLOGY, 2022, 13
  • [20] Senescence-associated secretory phenotype (SASP) in tumor microenvironment promotes liver cancer
    Ohtani, Naoko
    Kamachi, Fumitaka
    CANCER SCIENCE, 2018, 109 : 805 - 805