留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

Genetic Polymorphism, Telomere Biology and Non-Small Lung Cancer Risk

Rongrong Wei Frank T. DeVilbiss Wanqing Liu

Rongrong Wei, Frank T. DeVilbiss, Wanqing Liu. Genetic Polymorphism, Telomere Biology and Non-Small Lung Cancer Risk[J]. Journal of Genetics and Genomics, 2015, 42(10): 549-561. doi: 10.1016/j.jgg.2015.08.005
Citation: Rongrong Wei, Frank T. DeVilbiss, Wanqing Liu. Genetic Polymorphism, Telomere Biology and Non-Small Lung Cancer Risk[J]. Journal of Genetics and Genomics, 2015, 42(10): 549-561. doi: 10.1016/j.jgg.2015.08.005

doi: 10.1016/j.jgg.2015.08.005

Genetic Polymorphism, Telomere Biology and Non-Small Lung Cancer Risk

More Information
    • 关键词:
    •  / 
    •  / 
    •  / 
    •  
  • [1] Ahn, M.J., Won, H.H., Lee, J. et al. The 18p11.22 locus is associated with never smoker non-small cell lung cancer susceptibility in Korean populations Hum. Genet., 131 (2012),pp. 365-372
    [2] Amos, C.I., Wu, X., Broderick, P. et al. Genome-wide association scan of tag SNPs identifies a susceptibility locus for lung cancer at 15q25.1 Nat. Genet., 40 (2008),pp. 616-622
    [3] Aravindan, N., Aravindan, S., Herman, T.S. et al. EGFR tyrosine kinase inhibitor pelitinib regulates radiation-induced p65-dependent telomerase activation in squamous cell carcinoma Radiat. Res., 179 (2013),pp. 304-312
    [4] Autexier, C., Lue, N.F. The structure and function of telomerase reverse transcriptase Annu. Rev. Biochem., 75 (2006),pp. 493-517
    [5] Bae, E.Y., Lee, S.Y., Kang, B.K. et al. Replication of results of genome-wide association studies on lung cancer susceptibility loci in a Korean population Respirology, 17 (2012),pp. 699-706
    [6] Bell, D.W., Brannigan, B.W., Matsuo, K. et al. Increased prevalence of EGFR-mutant lung cancer in women and in East Asian populations: analysis of estrogen-related polymorphisms Clin. Cancer Res., 14 (2008),pp. 4079-4084
    [7] Bodnar, A.G., Ouellette, M., Frolkis, M. et al. Extension of life-span by introduction of telomerase into normal human cells Science, 279 (1998),pp. 349-352
    [8] Breathnach, O.S., Freidlin, B., Conley, B. et al. Twenty-two years of phase III trials for patients with advanced non-small-cell lung cancer: sobering results J. Clin. Oncol., 19 (2001),pp. 1734-1742
    [9] Brennan, P., Hainaut, P., Boffetta, P. Genetics of lung-cancer susceptibility Lancet Oncol., 12 (2011),pp. 399-408
    [10] Broderick, P., Wang, Y., Vijayakrishnan, J. et al. Deciphering the impact of common genetic variation on lung cancer risk: a genome-wide association study Cancer Res., 69 (2009),pp. 6633-6641
    [11] Budiyanto, A., Bito, T., Kunisada, M. et al. Inhibition of the epidermal growth factor receptor suppresses telomerase activity in HSC-1 human cutaneous squamous cell carcinoma cells J. Invest. Dermatol., 121 (2003),pp. 1088-1094
    [12] Campa, D., Rizzato, C., Stolzenberg-Solomon, R. et al. Int. J. Cancer, 137 (2015),pp. 2175-2183
    [13] Chen, X.F., Cai, S., Chen, Q.G. et al. Genet. Mol. Res., 11 (2012),pp. 370-378
    [14] Choi, J., Southworth, L.K., Sarin, K.Y. et al. TERT promotes epithelial proliferation through transcriptional control of a Myc- and Wnt-related developmental program PLoS Genet., 4 (2008),p. e10
    [15] Choong, N.W., Dietrich, S., Seiwert, T.Y. et al. Gefitinib response of erlotinib-refractory lung cancer involving meninges–role of EGFR mutation Nat. Clin. Pract. Oncol., 3 (2006),pp. 50-57
    [16] Clapp, R.W., Jacobs, M.M., Loechler, E.L. Environmental and occupational causes of cancer: new evidence 2005-2007 Rev. Environ. Health, 23 (2008),pp. 1-37
    [17] Codd, V., Nelson, C.P., Albrecht, E. et al. Identification of seven loci affecting mean telomere length and their association with disease Nat. Genet., 45 (2013),pp. 422-427
    [18] Counter, C.M., Meyerson, M., Eaton, E.N. et al. Oncogene, 16 (1998),pp. 1217-1222
    [19] Daigo, Y., Nakamura, Y. From cancer genomics to thoracic oncology: discovery of new biomarkers and therapeutic targets for lung and esophageal carcinoma Gen. Thorac. Cardiovasc. Surg., 56 (2008),pp. 43-53
    [20] Feng, J., Funk, W.D., Wang, S.S. et al. The RNA component of human telomerase Science, 269 (1995),pp. 1236-1241
    [21] Ferlay, J., Shin, H.R., Bray, F. et al. Estimates of worldwide burden of cancer in 2008: GLOBOCAN 2008 Int. J. Cancer, 127 (2010),pp. 2893-2917
    [22] Fu, X., Wan, S., Hann, H.W. et al. Relative telomere length: a novel non-invasive biomarker for the risk of non-cirrhotic hepatocellular carcinoma in patients with chronic hepatitis B infection Eur. J. Cancer, 48 (2012),pp. 1014-1022
    [23] Gago-Dominguez, M., Jiang, X., Conti, D.V. et al. Genetic variations on chromosomes 5p15 and 15q25 and bladder cancer risk: findings from the Los Angeles-Shanghai bladder case-control study Carcinogenesis, 32 (2011),pp. 197-202
    [24] Gorlova, O.Y., Zhang, Y., Schabath, M.B. et al. Never smokers and lung cancer risk: a case-control study of epidemiological factors Int. J. Cancer, 118 (2006),pp. 1798-1804
    [25] Greulich, H., Chen, T.H., Feng, W. et al. Oncogenic transformation by inhibitor-sensitive and -resistant EGFR mutants PLoS Med., 2 (2005),p. e313
    [26] Han, J., Qureshi, A.A., Prescott, J. et al. A prospective study of telomere length and the risk of skin cancer J. Invest. Dermatol., 129 (2009),pp. 415-421
    [27] Hsiung, C.A., Lan, Q., Hong, Y.C. et al. The 5p15.33 locus is associated with risk of lung adenocarcinoma in never-smoking females in Asia PLoS Genet., 6 (2010),p. e1001051
    [28] Hsu, C.P., Miaw, J., Hsia, J.Y. et al. Concordant expression of the telomerase-associated genes in non-small cell lung cancer Eur. J. Surg. Oncol., 29 (2003),pp. 594-599
    [29] Hu, Q.Y., Jin, T.B., Wang, L. et al. Tumour Biol., 35 (2014),pp. 1863-1866
    [30] Hu, Z., Wu, C., Shi, Y. et al. A genome-wide association study identifies two new lung cancer susceptibility loci at 13q12.12 and 22q12.2 in Han Chinese Nat. Genet., 43 (2011),pp. 792-796
    [31] Hung, R.J., McKay, J.D., Gaborieau, V. et al. A susceptibility locus for lung cancer maps to nicotinic acetylcholine receptor subunit genes on 15q25 Nature, 452 (2008),pp. 633-637
    [32] Janssen-Heijnen, M.L., Coebergh, J.W. The changing epidemiology of lung cancer in Europe Lung Cancer, 41 (2003),pp. 245-258
    [33] Jee, S.H., Kim, I.S., Suh, I. et al. Projected mortality from lung cancer in South Korea, 1980–2004 Int. J. Epidemiol., 27 (1998),pp. 365-369
    [34] Jemal, A., Bray, F., Center, M.M. et al. Global cancer statistics CA Cancer J. Clin., 61 (2011),pp. 69-90
    [35] Jin, G., Xu, L., Shu, Y. et al. Common genetic variants on 5p15.33 contribute to risk of lung adenocarcinoma in a Chinese population Carcinogenesis, 30 (2009),pp. 987-990
    [36] Kang, J.U., Koo, S.H., Kwon, K.C. et al. Cancer Genet. Cytogenet., 182 (2008),pp. 1-11
    [37] Kawaguchi, T., Matsumura, A., Fukai, S. et al. Japanese ethnicity compared with Caucasian ethnicity and never-smoking status are independent favorable prognostic factors for overall survival in non-small cell lung cancer: a collaborative epidemiologic study of the National Hospital Organization Study Group for Lung Cancer (NHSGLC) in Japan and a Southern California Regional Cancer Registry databases J. Thorac. Oncol., 5 (2010),pp. 1001-1010
    [38] Ke, J., Zhong, R., Zhang, T. et al. Replication study in Chinese population and meta-analysis supports association of the 5p15.33 locus with lung cancer PLoS One, 8 (2013),p. e62485
    [39] Kim, D.W., Lu, B., Hallahan, D.E. Receptor tyrosine kinase inhibitors as anti-angiogenic agents Curr. Opin. Investig. Drugs, 5 (2004),pp. 597-604
    [40] Kim, J., Jones-Hall, Y.L., Wei, R. et al. Front. Genet., 4 (2013),p. 162
    [41] Kinnersley, B., Migliorini, G., Broderick, P. et al. Br. J. Cancer, 107 (2012),pp. 1001-1008
    [42] Kohno, T., Kunitoh, H., Shimada, Y. et al. Carcinogenesis, 31 (2010),pp. 834-841
    [43] Kosaka, T., Yatabe, Y., Endoh, H. et al. Mutations of the epidermal growth factor receptor gene in lung cancer: biological and clinical implications Cancer Res., 64 (2004),pp. 8919-8923
    [44] Lam, W.K. Lung cancer in Asian women-the environment and genes Respirology, 10 (2005),pp. 408-417
    [45] Lan, Q., Cawthon, R., Gao, Y. et al. PLoS One, 8 (2013),p. e59230
    [46] Lan, Q., Cawthon, R., Shen, M. et al. A prospective study of telomere length measured by monochrome multiplex quantitative PCR and risk of non-Hodgkin lymphoma Clin. Cancer Res., 15 (2009),pp. 7429-7433
    [47] Lan, Q., Hsiung, C.A., Matsuo, K. et al. Genome-wide association analysis identifies new lung cancer susceptibility loci in never-smoking women in Asia Nat. Genet., 44 (2012),pp. 1330-1335
    [48] Landi, M.T., Chatterjee, N., Yu, K. et al. A genome-wide association study of lung cancer identifies a region of chromosome 5p15 associated with risk for adenocarcinoma Am. J. Hum. Genet., 85 (2009),pp. 679-691
    [49] Lantuejoul, S., Salon, C., Soria, J.C. et al. Telomerase expression in lung preneoplasia and neoplasia Int. J. Cancer, 120 (2007),pp. 1835-1841
    [50] Liam, C.K., Pang, Y.K., Leow, C.H. et al. Changes in the distribution of lung cancer cell types and patient demography in a developing multiracial Asian country: experience of a university teaching hospital Lung Cancer, 53 (2006),pp. 23-30
    [51] Lichtenstein, P., Holm, N.V., Verkasalo, P.K. et al. Environmental and heritable factors in the causation of cancer–analyses of cohorts of twins from Sweden, Denmark, and Finland N. Engl. J. Med., 343 (2000),pp. 78-85
    [52] Longo, D., Fauci, A., Kasper, D. et al.
    [53] Lortet-Tieulent, J., Soerjomataram, I., Ferlay, J. et al. International trends in lung cancer incidence by histological subtype: adenocarcinoma stabilizing in men but still increasing in women Lung Cancer, 84 (2014),pp. 13-22
    [54] Lu, X., Ke, J., Luo, X. et al. The SNP rs402710 in 5p15.33 is associated with lung cancer risk: a replication study in Chinese population and a meta-analysis PLoS One, 8 (2013),p. e76252
    [55] Lundberg, A.S., Randell, S.H., Stewart, S.A. et al. Immortalization and transformation of primary human airway epithelial cells by gene transfer Oncogene, 21 (2002),pp. 4577-4586
    [56] Lynch, T.J., Bell, D.W., Sordella, R. et al. Activating mutations in the epidermal growth factor receptor underlying responsiveness of non-small-cell lung cancer to gefitinib N. Engl. J. Med., 350 (2004),pp. 2129-2139
    [57] Machiela, M.J., Hsiung, C.A., Shu, X.O. et al. Genetic variants associated with longer telomere length are associated with increased lung cancer risk among never-smoking women in Asia: a report from the female lung cancer consortium in Asia Int. J. Cancer, 137 (2015),pp. 311-319
    [58] Maida, Y., Kyo, S., Kanaya, T. et al. Oncogene, 21 (2002),pp. 4071-4079
    [59] Mason, R.J., Broaddus, V.C., Marin, T. et al.
    [60] McCracken, M., Olsen, M., , Jemal, A. et al. Cancer incidence, mortality, and associated risk factors among Asian Americans of Chinese, Filipino, Vietnamese, Korean, and Japanese ethnicities CA Cancer J. Clin., 57 (2007),pp. 190-205
    [61] McCredie, M., Williams, S., Coates, M. Cancer mortality in East and Southeast Asian migrants to New South Wales, Australia, 1975–1995 Br. J. Cancer, 79 (1999),pp. 1277-1282
    [62] McKay, J.D., Hung, R.J., Gaborieau, V. et al. Lung cancer susceptibility locus at 5p15.33 Nat. Genet., 40 (2008),pp. 1404-1406
    [63] Melin, B.S., Nordfjall, K., Andersson, U. et al. Genet. Epidemiol., 36 (2012),pp. 368-372
    [64] Miki, D., Kubo, M., Takahashi, A. et al. Nat. Genet., 42 (2010),pp. 893-896
    [65] Needham, B.L., Diez Roux, A.V., Bird, C.E. et al. A test of biological and behavioral explanations for gender differences in telomere length: the multi-ethnic study of atherosclerosis Biodemography Soc. Biol., 60 (2014),pp. 156-173
    [66] Ng, M., Freeman, M.K., Fleming, T.D. et al. Smoking prevalence and cigarette consumption in 187 countries, 1980–2012 JAMA, 311 (2014),pp. 183-192
    [67] Nishii, T., Yokose, T., Miyagi, Y. et al. Clinicopathological features and EGFR gene mutation status in elderly patients with resected non-small-cell lung cancer BMC Cancer, 14 (2014),p. 610
    [68] O'Reilly, K.M., McLaughlin, A.M., Beckett, W.S. et al. Asbestos-related lung disease Am. Fam. Physician, 75 (2007),pp. 683-688
    [69] Paez, J.G., Janne, P.A., Lee, J.C. et al. Science, 304 (2004),pp. 1497-1500
    [70] Parkin, D.M., Bray, F., Ferlay, J. et al. Global cancer statistics, 2002 CA Cancer J. Clin., 55 (2005),pp. 74-108
    [71] Piao, C.Q., Liu, L., Zhao, Y.L. et al. Immortalization of human small airway epithelial cells by ectopic expression of telomerase Carcinogenesis, 26 (2005),pp. 725-731
    [72] Poole, J.C., Andrews, L.G., Tollefsbol, T.O. Activity, function, and gene regulation of the catalytic subunit of telomerase (hTERT) Gene, 269 (2001),pp. 1-12
    [73] Rafnar, T., Sulem, P., Stacey, S.N. et al. Nat. Genet., 41 (2009),pp. 221-227
    [74] Sakurada, A., Shepherd, F.A., Tsao, M.S. Epidermal growth factor receptor tyrosine kinase inhibitors in lung cancer: impact of primary or secondary mutations Clin. Lung Cancer, 7 (2006),pp. S138-144
    [75] Sato, M., Larsen, J.E., Lee, W. et al. Human lung epithelial cells progressed to malignancy through specific oncogenic manipulations Mol. Cancer Res., 11 (2013),pp. 638-650
    [76] Sharma, S.V., Bell, D.W., Settleman, J. et al. Epidermal growth factor receptor mutations in lung cancer Nat. Rev. Cancer, 7 (2007),pp. 169-181
    [77] Shen, M., Cawthon, R., Rothman, N. et al. A prospective study of telomere length measured by monochrome multiplex quantitative PCR and risk of lung cancer Lung Cancer, 73 (2011),pp. 133-137
    [78] Shete, S., Hosking, F.J., Robertson, L.B. et al. Genome-wide association study identifies five susceptibility loci for glioma Nat. Genet., 41 (2009),pp. 899-904
    [79] Shigematsu, H., Lin, L., Takahashi, T. et al. Clinical and biological features associated with epidermal growth factor receptor gene mutations in lung cancers J. Natl. Cancer Inst., 97 (2005),pp. 339-346
    [80] Shiraishi, K., Kohno, T., Kunitoh, H. et al. Contribution of nicotine acetylcholine receptor polymorphisms to lung cancer risk in a smoking-independent manner in the Japanese Carcinogenesis, 30 (2009),pp. 65-70
    [81] Shiraishi, K., Kunitoh, H., Daigo, Y. et al. A genome-wide association study identifies two new susceptibility loci for lung adenocarcinoma in the Japanese population Nat. Genet., 44 (2012),pp. 900-903
    [82] Song, Z., Zhu, H., Guo, Z. et al. Correlation of EGFR mutation and predominant histologic subtype according to the new lung adenocarcinoma classification in Chinese patients Med. Oncol., 30 (2013),p. 645
    [83] Stewart, B.W., Kleihues, P.
    [84] Stewart, B.W., Wild, C.P.
    [85] Subramanian, J., Govindan, R. Lung cancer in never smokers: a review J. Clin. Oncol., 25 (2007),pp. 561-570
    [86] Sweet-Cordero, A., Tseng, G.C., You, H. et al. Comparison of gene expression and DNA copy number changes in a murine model of lung cancer Genes Chromosomes Cancer, 45 (2006),pp. 338-348
    [87] Thatcher, N., Chang, A., Parikh, P. et al. Gefitinib plus best supportive care in previously treated patients with refractory advanced non-small-cell lung cancer: results from a randomised, placebo-controlled, multicentre study (Iressa Survival Evaluation in Lung Cancer) Lancet, 366 (2005),pp. 1527-1537
    [88] Thorgeirsson, T.E., Geller, F., Sulem, P. et al. A variant associated with nicotine dependence, lung cancer and peripheral arterial disease Nature, 452 (2008),pp. 638-642
    [89] Thun, M.J., Hannan, L.M., Adams-Campbell, L.L. et al. Lung cancer occurrence in never-smokers: an analysis of 13 cohorts and 22 cancer registry studies PLoS Med., 5 (2008),p. e185
    [90] Tokumo, M., Toyooka, S., Kiura, K. et al. The relationship between epidermal growth factor receptor mutations and clinicopathologic features in non–small cell lung cancers Clin. Cancer Res., 11 (2005),pp. 1167-1173
    [91] Torre, L.A., Bray, F., Siegel, R.L. et al. Global cancer statistics, 2012 CA Cancer J. Clin., 65 (2015),pp. 87-108
    [92] Toyoda, Y., Nakayama, T., Ioka, A. et al. Trends in lung cancer incidence by histological type in Osaka, Japan Jpn. J. Clin. Oncol., 38 (2008),pp. 534-539
    [93] Truong, T., Hung, R.J., Amos, C.I. et al. Replication of lung cancer susceptibility loci at chromosomes 15q25, 5p15, and 6p21: a pooled analysis from the International Lung Cancer Consortium J. Natl. Cancer Inst., 102 (2010),pp. 959-971
    [94] Tsao, Anne
    [95] U.S. Department of Health and Human Services
    [96] Verde, Z., Reinoso-Barbero, L., Chicharro, L. et al. Effects of cigarette smoking and nicotine metabolite ratio on leukocyte telomere length Environ. Res., 140 (2015),pp. 488-494
    [97] Villa, C., Cagle, P.T., Johnson, M. et al. Correlation of EGFR mutation status with predominant histologic subtype of adenocarcinoma according to the new lung adenocarcinoma classification of the International Association for the Study of Lung Cancer/American Thoracic Society/European Respiratory Society Arch. Pathol. Lab. Med., 138 (2014),pp. 1353-1357
    [98] Vineis, P., Airoldi, L., Veglia, F. et al. Environmental tobacco smoke and risk of respiratory cancer and chronic obstructive pulmonary disease in former smokers and never smokers in the EPIC prospective study BMJ, 330 (2005),p. 277
    [99] Wakelee, H.A., Chang, E.T., Gomez, S.L. et al. Lung cancer incidence in never smokers J. Clin. Oncol., 25 (2007),pp. 472-478
    [100] Walters, M.S., De, B.P., Salit, J. et al. Smoking accelerates aging of the small airway epithelium Respir. Res., 15 (2014),p. 94
    [101] Wang, F., Fu, P., Pang, Y. et al. Tumour Biol., 35 (2014),pp. 4667-4672
    [102] Wang, Y., Broderick, P., Matakidou, A. et al. Carcinogenesis, 31 (2010),pp. 234-238
    [103] Wang, Y., Broderick, P., Webb, E. et al. Common 5p15.33 and 6p21.33 variants influence lung cancer risk Nat. Genet., 40 (2008),pp. 1407-1409
    [104] Wei, R., Cao, L., Pu, H. et al. Clin. Cancer Res. (2015)
    [105] Weinrich, S.L., Pruzan, R., Ma, L. et al. Reconstitution of human telomerase with the template RNA component hTR and the catalytic protein subunit hTRT Nat. Genet., 17 (1997),pp. 498-502
    [106] Wentzensen, I.M., Mirabello, L., Pfeiffer, R.M. et al. The association of telomere length and cancer: a meta-analysis Cancer Epidemiol. Biomarkers Prev., 20 (2011),pp. 1238-1250
    [107] Wu, C., Hu, Z., Yu, D. et al. Genetic variants on chromosome 15q25 associated with lung cancer risk in Chinese populations Cancer Res., 69 (2009),pp. 5065-5072
    [108] Wu, T.C., Lin, P., Hsu, C.P. et al. Loss of telomerase activity may be a potential favorable prognostic marker in lung carcinomas Lung Cancer, 41 (2003),pp. 163-169
    [109] Xie, M., Chen, Q., He, S. et al. Oncol. Rep., 26 (2011),pp. 1019-1027
    [110] Yang, J., Chang, E., Cherry, A.M. et al. Human endothelial cell life extension by telomerase expression J. Biol. Chem., 274 (1999),pp. 26141-26148
    [111] Yin, Z., Cui, Z., Ren, Y. et al. Med. Oncol., 31 (2014),p. 114
    [112] Yoon, K.A., Park, J.H., Han, J. et al. A genome-wide association study reveals susceptibility variants for non-small cell lung cancer in the Korean population Hum. Mol. Genet., 19 (2010),pp. 4948-4954
    [113] Yuan, Y., Lu, C., Xue, L. et al. Tumour Biol., 35 (2014),pp. 4435-4442
    [114] Zhao, D.P., Yang, C.L., Zhou, X. et al. Mol. Genet. Genomics, 289 (2014),pp. 1001-1012
    [115] Zhao, Z., Li, C., Yang, L. et al. Exp. Lung Res., 39 (2013),pp. 91-98
    [116] Zienolddiny, S., Skaug, V., Landvik, N.E. et al. Carcinogenesis, 30 (2009),pp. 1368-1371
    [117] Zou, P., Gu, A., Ji, G. et al. BMC Cancer, 12 (2012),p. 7
  • 加载中
计量
  • 文章访问数:  74
  • HTML全文浏览量:  25
  • PDF下载量:  1
  • 被引次数: 0
出版历程
  • 收稿日期:  2015-06-12
  • 录用日期:  2015-08-10
  • 修回日期:  2015-08-03
  • 网络出版日期:  2015-09-14
  • 刊出日期:  2015-10-20

目录

    /

    返回文章
    返回