4.8 Article

Astrocyte elevated gene-1 regulates hepatocellular carcinoma development and progression

Journal

JOURNAL OF CLINICAL INVESTIGATION
Volume 119, Issue 3, Pages 465-477

Publisher

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI36460

Keywords

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Funding

  1. Goldhirsh Foundation grant
  2. NIH [P01 NS31492, R01 CA035675, R01 DK076986]
  3. Spanish National Health Institute [SAF-2007-61898]
  4. Samuel Waxman Cancer Research Foundation
  5. Liver Tissue Cell Distribution System [N01DK92310]
  6. ICREA Funding Source: Custom

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Hepatocellular carcinoma (HCC) is a highly aggressive vascular cancer characterized by diverse etiology, activation of multiple signal transduction pathways, and various gene mutations. Here, we have determined a specific role for astrocyte elevated gene-1 (AEG1) in HCC pathogenesis. Expression of AEG1 was extremely low in human hepatocytes, but its levels were significantly increased in human HCC. Stable overexpression of AEG1 converted nontumorigenic human HCC cells into highly aggressive vascular tumors, and inhibition of AEG1 abrogated tumorigenesis by aggressive HCC cells in a xenograft model of nude mice. In human HCC, AEG1 overexpression was associated with elevated copy numbers. Microarray analysis revealed that AEG1 modulated the expression of genes associated with invasion, metastasis, chemoresistance, angiogenesis,and senescence. AEG1 also was found to activate Wnt/beta-catenin signaling via ERK42/44 activation and upregulated lymphoid-enhancing factor 1/T cell factor 1 (LEF1/TCF1), the ultimate executor of the Writ pathway, important for HCC progression. Inhibition studies further demonstrated that activation of Writ signaling played a key role in mediating AEG1 function. AEG1 also activated the NF-kappa B pathway, which may play a role in the chronic inflammatory changes preceding HCC development. These data indicate that AEG1 plays a central role in regulating diverse aspects of HCC pathogenesis. Targeted inhibition of AEG1 might lead to the shutdown of key elemental characteristics of HCC and could lead to an effective therapeutic strategy for HCC.

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