Literature DB >> 20388846

Combined functional genome survey of therapeutic targets for hepatocellular carcinoma.

Reiko Satow1, Miki Shitashige, Yae Kanai, Fumitaka Takeshita, Hidenori Ojima, Takafumi Jigami, Kazufumi Honda, Tomoo Kosuge, Takahiro Ochiya, Setsuo Hirohashi, Tesshi Yamada.   

Abstract

PURPOSE: The outcome of patients with advanced hepatocellular carcinoma (HCC) has remained unsatisfactory. Patients with HCC suffer from chronic hepatitis or liver cirrhosis, and their reserve liver function is often limited. EXPERIMENTAL
DESIGN: To develop new therapeutic agents that act specifically on HCC but interfere only minimally with residual liver function, we searched for genes that were upregulated in 20 cases of HCC [namely, discovery sets 1 (n = 10) and 2 (n = 10)] in comparison with corresponding nontumorous liver and a panel representing normal organs using high-density microarrays capable of detecting all exons in the human genome.
RESULTS: Eleven transcripts whose expression was significantly increased in HCC were subjected to siRNA-based secondary screening of genes required for HCC cell proliferation as well as quantitative reverse transcription-PCR analysis [validation sets 1 (n = 20) and 2 (n = 44)] and immunohistochemistry (n = 19). We finally extracted four genes, AKR1B10, HCAP-G, RRM2, and TPX2, as candidate therapeutic targets for HCC. siRNA-mediated knockdown of these candidate genes inhibited the proliferation of HCC cells and the growth of HCC xenografts transplanted into immunodeficient mice.
CONCLUSIONS: The four genes we identified were highly expressed in HCC, and HCC cells are highly dependent on these genes for proliferation. Although many important genes must have been overlooked, the selected genes were biologically relevant. The combination of genome-wide expression and functional screening described here is a rapid and comprehensive approach that could be applied in the identification of therapeutic targets in any type of human malignancy. Copyright 2010 AACR.

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Year:  2010        PMID: 20388846     DOI: 10.1158/1078-0432.CCR-09-2214

Source DB:  PubMed          Journal:  Clin Cancer Res        ISSN: 1078-0432            Impact factor:   12.531


  81 in total

1.  Aldoketoreductase family 1B10 (AKR1B10) as a biomarker to distinguish hepatocellular carcinoma from benign liver lesions.

Authors:  Kristina A Matkowskyj; Han Bai; Jie Liao; Wanying Zhang; Haonan Li; Sambasiva Rao; Reed Omary; Guang-Yu Yang
Journal:  Hum Pathol       Date:  2013-12-18       Impact factor: 3.466

2.  NUSAP1 influences the DNA damage response by controlling BRCA1 protein levels.

Authors:  Shweta Kotian; Tapahsama Banerjee; Ainsley Lockhart; Kun Huang; Umit V Catalyurek; Jeffrey D Parvin
Journal:  Cancer Biol Ther       Date:  2014-02-12       Impact factor: 4.742

3.  TPX2 knockdown suppressed hepatocellular carcinoma cell invasion via inactivating AKT signaling and inhibiting MMP2 and MMP9 expression.

Authors:  Qingquan Liu; Pinghua Yang; Kangsheng Tu; Hongyong Zhang; Xin Zheng; Yingmin Yao; Qingguang Liu
Journal:  Chin J Cancer Res       Date:  2014-08       Impact factor: 5.087

4.  In Vivo Exposures to Particulate Matter Collected from Saudi Arabia or Nickel Chloride Display Similar Dysregulation of Metabolic Syndrome Genes.

Authors:  Jason Brocato; Michelle Hernandez; Freda Laulicht; Hong Sun; Magdy Shamy; Mansour A Alghamdi; Mamdouh I Khoder; Thomas Kluz; Lung-Chi Chen; Max Costa
Journal:  J Toxicol Environ Health A       Date:  2015

5.  ZWINT is the next potential target for lung cancer therapy.

Authors:  Fang Peng; Qiang Li; Shao-Qing Niu; Guo-Ping Shen; Ying Luo; Ming Chen; Yong Bao
Journal:  J Cancer Res Clin Oncol       Date:  2019-01-14       Impact factor: 4.553

Review 6.  TPX2: of spindle assembly, DNA damage response, and cancer.

Authors:  Gernot Neumayer; Camille Belzil; Oliver J Gruss; Minh Dang Nguyen
Journal:  Cell Mol Life Sci       Date:  2014-02-21       Impact factor: 9.261

7.  Targeting protein for xenopus kinesin-like protein 2 (TPX2) regulates γ-histone 2AX (γ-H2AX) levels upon ionizing radiation.

Authors:  Gernot Neumayer; Angela Helfricht; Su Yeon Shim; Hoa Thi Le; Cecilia Lundin; Camille Belzil; Mathieu Chansard; Yaping Yu; Susan P Lees-Miller; Oliver J Gruss; Haico van Attikum; Thomas Helleday; Minh Dang Nguyen
Journal:  J Biol Chem       Date:  2012-10-08       Impact factor: 5.157

8.  Emerging roles of the ribonucleotide reductase M2 in colorectal cancer and ultraviolet-induced DNA damage repair.

Authors:  Ai-Guo Lu; Hao Feng; Pu-Xiong-Zhi Wang; Ding-Pei Han; Xue-Hua Chen; Min-Hua Zheng
Journal:  World J Gastroenterol       Date:  2012-09-14       Impact factor: 5.742

9.  TPX2 expression is associated with cell proliferation and patient outcome in esophageal squamous cell carcinoma.

Authors:  Po-Kuei Hsu; Hsuan-Yu Chen; Yi-Chen Yeh; Chueh-Chuan Yen; Yu-Chung Wu; Chung-Ping Hsu; Wen-Hu Hsu; Teh-Ying Chou
Journal:  J Gastroenterol       Date:  2013-08-21       Impact factor: 7.527

10.  Target protein for Xklp2 (TPX2), a microtubule-related protein, contributes to malignant phenotype in bladder carcinoma.

Authors:  Liang Yan; Shenglei Li; Changbao Xu; Xinghua Zhao; Bin Hao; Huixiang Li; Baoping Qiao
Journal:  Tumour Biol       Date:  2013-07-20
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