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Molecular Cancer Therapeutics
Molecular Cancer Therapeutics
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Research Articles

A novel hTERT promoter–driven E1A therapeutic for ovarian cancer

Xiaoming Xie, Jennifer L. Hsu, Min-Gew Choi, Weiya Xia, Hirohito Yamaguchi, Chun-Te Chen, Bon Q. Trinh, Zhen Lu, Naoto T. Ueno, Judith K. Wolf, Robert C. Bast Jr. and Mien-Chie Hung
Xiaoming Xie
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Jennifer L. Hsu
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Min-Gew Choi
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Weiya Xia
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Hirohito Yamaguchi
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Chun-Te Chen
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Bon Q. Trinh
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Zhen Lu
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Naoto T. Ueno
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Judith K. Wolf
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Robert C. Bast Jr.
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Mien-Chie Hung
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DOI: 10.1158/1535-7163.MCT-09-0056 Published August 2009
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This article has a correction. Please see:

  • T-VISA-E1A promotes cancer cell death - September 17, 2009

Abstract

Currently, an effective gene therapy strategy, which not only retains cancer-specific expression but also limits toxicity, has yet to be developed for ovarian cancer. Mounting reports over the years have shown that human telomerase activity is significantly elevated in cancer cells compared with normal cells. In this study, we evaluated the human telomerase reverse transcriptase (hTERT; T) promoter and showed that it can direct target gene expression preferentially in ovarian cancer cells. However, its promoter (T) activity is much lower than that of cytomegalovirus (CMV), a commonly used nonspecific promoter. To overcome this problem, we have integrated the T promoter into our recently developed VP16-Gal4-WPRE integrated systemic amplifier (VISA) system and dramatically enhanced transgene expression. In addition, to further develop this cancer-specific promoter gene expression system into an applicable therapeutic vector, we expressed E1A (an adenoviral type 5 transcription factor that possesses anticancer properties) through this novel VISA platform. We showed that the T-VISA system specifically targeted the expression of E1A to ovarian cancer cells at a level greater than or comparable with the commonly used CMV promoter, yet remained nearly silent in normal cells, thus making this a suitable gene therapy construct. By using this cancer-specific promoter that limits target gene expression in normal cells/tissues, potential toxicity induced by the CMV promoter would be prevented. More importantly, we showed significant antitumor activity with much less toxicity in animal models through i.v. delivery of T-VISA-E1A:liposomal nanoparticles, suggesting a promising role of T-VISA-E1A for ovarian cancer treatment under a gene therapy setting. [Mol Cancer Ther 2009;8(8):2375–82]

  • Human telomerase
  • gene therapy
  • nonviral vector
  • liposome
  • E1A

Footnotes

  • Grant support: Sister Institution Fund of M. D. Anderson Cancer Center (MDACC) and China Medical University and Hospital (CMUH), Ovarian Cancer Specialized Program of Research Excellence (SPORE; MDACC, P50 CA83639), Pancreatic Cancer SPORE (MDACC, P20 CA101936), Breast Cancer SPORE (MDACC, P50 CA116199), and the Marcus Foundation.

  • The costs of publication of this article were defrayed in part by the payment of page charges. This article must therefore be hereby marked advertisement in accordance with 18 U.S.C. Section 1734 solely to indicate this fact.

  • Note: Supplementary material for this article is available at Molecular Cancer Therapeutics Online (http://mct.aacrjournals.org/).

    • Received January 21, 2009.
    • Revision received April 29, 2009.
    • Accepted April 30, 2009.
  • © 2009 American Association for Cancer Research.
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Molecular Cancer Therapeutics: 8 (8)
August 2009
Volume 8, Issue 8
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A novel hTERT promoter–driven E1A therapeutic for ovarian cancer
Xiaoming Xie, Jennifer L. Hsu, Min-Gew Choi, Weiya Xia, Hirohito Yamaguchi, Chun-Te Chen, Bon Q. Trinh, Zhen Lu, Naoto T. Ueno, Judith K. Wolf, Robert C. Bast Jr. and Mien-Chie Hung
Mol Cancer Ther August 1 2009 (8) (8) 2375-2382; DOI: 10.1158/1535-7163.MCT-09-0056

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A novel hTERT promoter–driven E1A therapeutic for ovarian cancer
Xiaoming Xie, Jennifer L. Hsu, Min-Gew Choi, Weiya Xia, Hirohito Yamaguchi, Chun-Te Chen, Bon Q. Trinh, Zhen Lu, Naoto T. Ueno, Judith K. Wolf, Robert C. Bast Jr. and Mien-Chie Hung
Mol Cancer Ther August 1 2009 (8) (8) 2375-2382; DOI: 10.1158/1535-7163.MCT-09-0056
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Molecular Cancer Therapeutics
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