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Alteration in gene expression profile and biological behavior in human lung cancer cell line NL9980 by nm23-H1 gene silencing
Authors:Ma Wei  Chen Jun  Xue Xingyang  Wang Zhuomin  Liu Hongyu  Wang Ting  Bai Yun  Tang Shou-Ching  Zhou Qinghua
Institution:a Tianjin Key Laboratory of Lung Cancer Metastasis and Tumor Microenvironment, Tianjin Lung Cancer Institute, Tianjin Medical University General Hospital, Anshan Road No. 154, Heping District, Tianjin 300052, China
b The Key Laboratory of Lung Cancer Molecular Biology in Sichuan Province, West China Hospital, Sichuan University, Chengdu, Sichuan 610041, China
c Division of Hematology/Oncology, University of Colorado Denver Health Medical Center, Davis Pavilion South Tower, 700 Delaware, Denver, CO 80224, USA
Abstract:Lung cancer is the leading cause of cancer death in both men and women. Tumor metastasis is an essential aspect of lung cancer progression. nm23-H1 is a metastasis suppressor gene. The molecular mechanism by which nm23-H1 suppresses the metastasis is still unclear. Here, we compared the gene expression profile of human large cell lung cancer cell line NL9980 by nm23-H1 gene silencing with that of negative control cells to comprehensively investigate nm23-H1-mediated changes in gene expression of NL9980 cells. Microarray assay revealed that expression of 733-known genes (1.9%, 733/38,500) were altered in response to nm23-H1 gene silencing, including 466 upregulated genes and 267 downregulated. real-time PCR assay of the expression changes indicated that 81.82% (45/55) of verified genes were consistent with that observed in microarray assay. The upregulated genes included MMP-1, -2, SNAI2, CXCL1, 2, 3, PAI-2, while the downregulated genes included cystatin B, TIMP-2, E-cadherin, centrin-2, all of which have been associated with tumor metastasis. Furthermore, we confirmed by Western blot that the expression of MMP-1 and -2 were significantly increased while that of cystatin B was dramatically decreased in NL9980-nm23-H1 silencing cells. The NL9980-nm23-H1 silencing cells exhibited significantly more S phase growth and invasive ability. Thus, silencing of nm23-H1 gene caused metastasis-related gene expression changes in lung cancer cells. The knockdown of nm23-H1 expression may change the lung cancer cells to a more invasive phenotype through alteration in the expression of a set of genes.
Keywords:nm23-H1  nonmetastatic protein 23 homolog 1 (also known as NME1)  MMP  matrix metalloprotein family  SNAI2  snail homolog 2  CXCL  chemokine (C-X-C motif) ligand (also known as growth-related oncogene  GRO)  TIMP-2  matrix metalloprotein inhibitor-2  PAI-2  plasminogen activator inhibitor-2 (also known as SERPINE2)  VEGF-C  vascular endothelial growth factor C  RASA2  RAS p21 protein activator 2
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