Phosphatase and tensin analog gene overexpression engenders cellular death in human malignant mesothelioma cells via inhibition of AKT phosphorylation

被引:9
作者
Mohiuddin I. [1 ]
Cao X. [1 ]
Ozvaran M.K. [1 ]
Zumstein L. [1 ]
Chada S. [1 ]
Smythe W.R. [1 ]
机构
[1] Department of Thoracic Surgery, Univ. TX M. D. Anderson Cancer Ctr., Box 109, 1515 Holcombe Blvd., Houston
关键词
AKT; Apoptosis; Mesothelioma; PTEN;
D O I
10.1007/BF02573071
中图分类号
学科分类号
摘要
Background: Abnormal phosphatase and tensin analog (PTEN) gene expression has been noted in neoplasms. The PTEN protein cleaves phosphate groups from cellular growth kinases, inhibiting tumor propagation. A downstream target of PTEN is AKT, a serine-threonine kinase that when activated inhibits apoptosis. We sought to determine whether PTEN overexpression in mesothelioma cells would engender hypophosphorylation of AKT and apoptosis. Methods: Human malignant mesothelioma cell lines REN and 1-45 were transfected with adenoviral vectors AdPTEN and AdBgal (marker gene) at various multiplicities of infection (MOI). Cell viability was measured using a colorimetric assay, and apoptosis was assessed by morphology and subG1 fluorescence-activated cell sorter (FACS) analysis. PTEN protein and AKT phophorylation were evaluated by Western blot, and AKT kinase activity was evaluated by functional assay. Results: Increased cellular killing was noted with AdPTEN gene transfer. The ratio of cell killing with AdPTEN to AdBgal widened with increasing MOI and was statistically significant at all MOI. Cells demonstrated apoptosis by morphologic and subG1 FACS analyses. Cells overexpressing PTEN demonstrated decreased phosphorylated (active) AKT and AKT kinase activity compared with controls. Conclusions: Overexpression of PTEN engenders apoptosis in mesothelioma by AKT hypophosphorylation. The forced overexpression of PTEN may prove useful clinically in this treatmentresistant neoplasm.
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页码:310 / 316
页数:6
相关论文
共 28 条
[1]  
Carbone M., Rizzo P., Pass H., Simian virus 40: The link with human malignant mesothelioma is well established, Anticancer Res, 20, pp. 875-878, (2000)
[2]  
Sugarbaker D.J., Flores R.M., Jaklitsch M.T., Et al., Resection margins, extrapleural nodal status, and cell type determine postoperative long-term survival in trimodality therapy of malignant pleural mesothelioma: Results in 183 patients, J Thorac Cardiovasc Surg, 117, pp. 54-65, (1999)
[3]  
Ong T., Vogelzang N.J., Chemotherapy in malignant mesothelioma: A review, J Clin Oncol, 14, pp. 1007-1017, (1996)
[4]  
Smythe W.R., Hwang H.C., Elshami A.A., Et al., Treatment of experimental human mesothelioma using adenovirus transfer of the herpes simplex thymidine kinase gene, Ann Surg, 222, pp. 78-86, (1995)
[5]  
Moskal T.L., Doughtery T.J., Urschel J.D., Et al., Operation and photodynamic therapy for pleural mesothelioma: 6-Year followup, Ann Thorac Surg, 66, pp. 11128-11133, (1998)
[6]  
Christmas T.I., Manning L.S., Garlepp M.J., Musk A.W., Robinson B.W., Effect of interferon-alpha 2a on malignant mesothelioma, J Interferon Res, 13, pp. 9-12, (1993)
[7]  
Eggermont A.M.M., Goey S.H., Slingerland R., Et al., Clinical and immunological evaluation of intrapleural interleukin-2 in malignant pleural mesothelioma: A phase II study, Proc Am Assoc Cancer Res, 32, pp. 206-209, (1991)
[8]  
Peto J., Decarli A., La Vecchia C., Et al., The European mesothelioma epidemic, Br J Cancer, 79, pp. 666-672, (1999)
[9]  
Smythe W.R., Hwang H.C., Amin K.M., Et al., Use of recombinant adenovirus to transfer the herpes simplex virus thymidine kinase (HSVtk) gene to thoracic neoplasms: An effective in vitro drug sensitization system, Cancer Res, 54, pp. 2055-2059, (1994)
[10]  
Dahia P.L.M., PTEN, a unique tumor suppressor gene, Endocr Relat Cancer, 7, pp. 115-129, (2000)