A promoter SNP rs4073T>A in the common allele of the interleukin 8 gene is associated with the development of idiopathic pulmonary fibrosis via the IL-8 protein enhancing mode
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  • 作者:Mi-Hyun Ahn (1)
    Byung-Lae Park (2)
    Shin-Hwa Lee (1)
    Sung-Woo Park (1)
    Jong-Sook Park (1)
    Do-Jin Kim (1)
    An-Soo Jang (1)
    Jai-Soung Park (3)
    Hwa-Kyun Shin (4)
    Soo-Taek Uh (5)
    Yang-Ki Kim (5)
    Young Whan Kim (6)
    Sung Koo Han (6)
    Ki-Suck Jung (7)
    Kye Young Lee (8)
    Sung Hwan Jeong (9)
    Jeong Woong Park (9)
    Byoung Whui Choi (10)
    In Won Park (10)
    Man Pyo Chung (11)
    Hyoung Doo Shin (12) (2)
    Jin Woo Song (13)
    Dong Soon Kim (13)
    Choon-Sik Park (1)
    Young-Soo Shim (14) (6)
  • 刊名:Respiratory Research
  • 出版年:2011
  • 出版时间:December 2011
  • 年:2011
  • 卷:12
  • 期:1
  • 全文大小:278KB
  • 参考文献:1. American Thoracic Society: Idiopathic pulmonary fibrosis: diagnosis and treatment. International consensus statement. American Thoracic Society (ATS), and the European Respiratory Society (ERS). / Am J Respir Crit Care Med 2000,161(2 Pt 1):646鈥?64.
    2. Gross TJ, Hunninghake GW: Idiopathic pulmonary fibrosis. / N Engl J Med 2001,345(7):517鈥?25. CrossRef
    3. Selman M, King TE, Pardo A: Idiopathic pulmonary fibrosis: prevailing and evolving hypotheses about its pathogenesis and implications for therapy. / Ann Intern Med 2001,134(2):136鈥?51.
    4. Marshall RP, Puddicombe A, Cookson WO, Laurent GJ: Adult familial cryptogenic fibrosing alveolitis in the United Kingdom. / Thorax 2000,55(2):143鈥?46. CrossRef
    5. Bremer LA, Blackman SM, Vanscoy LL, McDougal KE, Bowers A, Naughton KM, Cutler DJ, Cutting GR: Interaction between a novel TGFB1 haplotype and CFTR genotype is associated with improved lung function in cystic fibrosis. / Hum Mol Genet 2008,17(14):2228鈥?237. CrossRef
    6. Grutters JC, du Bois RM: Genetics of fibrosing lung diseases. / Eur Respir J 2005,25(5):915鈥?27. CrossRef
    7. Vasakova M, Striz I, Slavcev A, Jandova S, Kolesar L, Sulc J: Th1/Th2 cytokine gene polymorphisms in patients with idiopathic pulmonary fibrosis. / Tissue Antigens 2006,67(3):229鈥?32. CrossRef
    8. Oppenheim JJ, Zachariae CO, Mukaida N, Matsushima K: Properties of the novel proinflammatory supergene "intercrine" cytokine family. / Annu Rev Immunol 1991, 9:617鈥?48. CrossRef
    9. Southcott AM, Jones KP, Li D, Majumdar S, Cambrey AD, Pantelidis P, Black CM, Laurent GJ, Davies BH, Jeffery PK: Interleukin-8. Differential expression in lone fibrosing alveolitis and systemic sclerosis. / Am J Respir Crit Care Med 1995,151(5):1604鈥?612.
    10. Keane MP, Belperio JA, Moore TA, Moore BB, Arenberg DA, Smith RE, Burdick MD, Kunkel SL, Strieter RM: Neutralization of the CXC chemokine, macrophage inflammatory protein-2, attenuates bleomycin-induced pulmonary fibrosis. / J Immunol 1999,162(9):5511鈥?518.
    11. Ebina M, Shimizukawa M, Shibata N, Kimura Y, Suzuki T, Endo M, Sasano H, Kondo T, Nukiwa T: Heterogeneous increase in CD34-positive alveolar capillaries in idiopathic pulmonary fibrosis. / Am J Respir Crit Care Med 2004,169(11):1203鈥?208. CrossRef
    12. Keane MP, Arenberg DA, Lynch JP, Whyte RI, Iannettoni MD, Burdick MD, Wilke CA, Morris SB, Glass MC, DiGiovine B, Kunkel SL, Strieter RM: The CXC chemokines, IL-8 and IP-10, regulate angiogenic activity in idiopathic pulmonary fibrosis. / J Immunol 1997,159(3):1437鈥?443.
    13. Mukaida N, Shiroo M, Matsushima K: Genomic structure of the human monocyte-derived neutrophil chemotactic factor IL-8. / J Immunol 1989,143(4):1366鈥?371.
    14. Arinir U, Klein W, Rohde G, Stemmler S, Epplen JT, Schultze-Werninghaus G: Polymorphisms in the interleukin-8 gene in patients with chronic obstructive pulmonary disease. / Electrophoresis 2005,26(15):2888鈥?891. CrossRef
    15. Hillian AD, Londono D, Dunn JM, Goddard KA, Pace RG, Knowles MR, Drumm ML: Modulation of cystic fibrosis lung disease by variants in interleukin-8. / Genes Immun 2008,9(6):501鈥?08. CrossRef
    16. Renzoni E, Lympany P, Sestini P, Pantelidis P, Wells A, Black C, Welsh K, Bunn C, Knight C, Foley P, du Bois RM: Distribution of novel polymorphisms of the interleukin-8 and CXC receptor 1 and 2 genes in systemic sclerosis and cryptogenic fibrosing alveolitis. / Arthritis Rheum 2000,43(7):1633鈥?640. CrossRef
    17. Kim TH, Lee YH, Kim KH, Lee SH, Cha JY, Shin EK, Jung S, Jang AS, Park SW, Uh ST, Kim YH, Park JS, Sin HG, Youm W, Koh ES, Cho SY, Paik YK, Rhim TY, Park CS: Role of lung apolipoprotein A-I in idiopathic pulmonary fibrosis: antiinflammatory and antifibrotic effect on experimental lung injury and fibrosis. / Am J Respir Crit Care Med 2010,182(5):633鈥?42. CrossRef
    18. Hedrick PW: Gametic disequilibrium measures: proceed with caution. / Genetics 1987,117(2):331鈥?41.
    19. Stephens M, Smith NJ, Donnelly P: A new statistical method for haplotype reconstruction from population data. / Am J Hum Genet 2001,68(4):978鈥?89. CrossRef
    20. Shin HD, Winkler C, Stephens JC, Bream J, Young H, Goedert JJ, O'Brien TR, Vlahov D, Buchbinder S, Giorgi J, Donfield S, Willoughby A, Smith MW: Genetic restriction of HIV-1 pathogenesis to AIDS by promoter alleles of IL10. / Proc Natl Acad Sci USA 2000,97(26):14467鈥?4472. CrossRef
    21. Menashe I, Rosenberg PS, Chen BE: PGA: power calculator for casecontrol genetic association analyses. / BMC Genet 2008, 9:36. CrossRef
    22. Hacking D, Knight JC, Rockett K, Brown H, Frampton J, Kwiatkowski DP, Hull J, Udalova IA: Increased in vivo transcription of an IL-8 haplotype associated with respiratory syncytial virus disease-susceptibility. / Genes Immun 2004,5(4):274鈥?82. CrossRef
    23. Heinzmann A, Ahlert I, Kurz T, Berner R, Deichmann KA: Association study suggests opposite effects of polymorphisms within IL8 on bronchial asthma and respiratory syncytial virus bronchiolitis. / J Allergy Clin Immunol 2004,114(3):671鈥?76. CrossRef
    24. Hull J, Thomson A, Kwiatkowski D: Association of respiratory syncytial virus bronchiolitis with the interleukin 8 gene region in UK families. / Thorax 2000,55(12):1023鈥?027. CrossRef
    25. Ross OA, O'Neill C, Rea IM, Lynch T, Gosal D, Wallace A, Curran MD, Middleton D, Gibson JM: Functional promoter region polymorphism of the proinflammatory chemokine IL-8 gene associates with Parkinson's disease in the Irish. / Hum Immunol 2004,65(4):340鈥?46. CrossRef
    26. van der Kuyl AC, Polstra AM, Weverling GJ, Zorgdrager F, van den Burg R, Cornelissen M: An IL-8 gene promoter polymorphism is associated with the risk of the development of AIDS-related Kaposi's sarcoma: a case-control study. / AIDS 2004,18(8):1206鈥?208. CrossRef
    27. Lee WP, Tai DI, Lan KH, Li AF, Hsu HC, Lin EJ, Lin YP, Sheu ML, Li CP, Chang FY, Chao Y, Yen SH, Lee SD: The -251T allele of the interleukin-8 promoter is associated with increased risk of gastric carcinoma featuring diffusetype histopathology in Chinese population. / Clin Cancer Res 2005,11(18):6431鈥?441. CrossRef
    28. Dapas B, Tell G, Scaloni A, Pines A, Ferrara L, Quadrifoglio F, Scaggiante B: Identification of different isoforms of eEF1A in the nuclear fraction of human T-lymphoblastic cancer cell line specifically binding to aptameric cytotoxic GT oligomers. / Eur J Biochem 2003,270(15):3251鈥?262. CrossRef
  • 作者单位:Mi-Hyun Ahn (1)
    Byung-Lae Park (2)
    Shin-Hwa Lee (1)
    Sung-Woo Park (1)
    Jong-Sook Park (1)
    Do-Jin Kim (1)
    An-Soo Jang (1)
    Jai-Soung Park (3)
    Hwa-Kyun Shin (4)
    Soo-Taek Uh (5)
    Yang-Ki Kim (5)
    Young Whan Kim (6)
    Sung Koo Han (6)
    Ki-Suck Jung (7)
    Kye Young Lee (8)
    Sung Hwan Jeong (9)
    Jeong Woong Park (9)
    Byoung Whui Choi (10)
    In Won Park (10)
    Man Pyo Chung (11)
    Hyoung Doo Shin (12) (2)
    Jin Woo Song (13)
    Dong Soon Kim (13)
    Choon-Sik Park (1)
    Young-Soo Shim (14) (6)

    1. Div. of Allergy and Respiratory Medicine, Dept. of Internal Medicine, Soonchunhyang Univ. Bucheon Hospital, 1174, Jung-dong, Wonmi-gu, Bucheon, 420-020, Korea
    2. Dept. of Genetic Epidemiology, SNP-Genetics Inc., B-1407, WooLim Lion鈥檚 Valley, 371-28 Gasan-Dong, Geumcheon-Ku, Seoul, 153-803, Korea
    3. Div. of Radiology, Soonchunhyang Univ. Bucheon Hosp., 1174 Jung-Dong, Wonmi-Gu, Bucheon, Gyeonggi-Do, 420-020, Korea
    4. Div. of Thoracic and Cardiovascular Surgery, Soonchunhyang Univ. Bucheon Hosp., 1174 Jung-Dong, Wonmi-Gu, Bucheon, Gyeonggi-Do, 420-020, Korea
    5. Div. of Allergy and Respiratory Medicine, Soonchunhyang Univ. Seoul Hosp., 657-58 Hannam-dong, Yongsan-gu, Seoul, 140-743, Korea
    6. Dept. of Internal Medicine, Seoul National Univ. Hosp., 28 Yongon-dong, Seoul, Korea
    7. Dept. of Respiratory and Critical Care Medicine, Hallym Univ., Seoul, Korea
    8. Dept. of Internal Medicine, College of Medicine, Dankook Univ., Cheonan, Korea
    9. Div. of Pulmonary Medicine, Dept. of Internal Medicine, Gachon Medical School Gil Medical Center, Cheonan, Korea
    10. Department of Internal Medicine, Chung Ang University College of Medicine, Seoul, Korea
    11. Div. of Pulmonary and Critical Care Medicine, Samsung Medical Center, Sungkyunkwan Univ. School of Medicine, Seoul, Korea
    12. Dept. of Life Science, Sogang Univ., Sinsu-dong, Mapo-gu, Seoul, 121-742, Korea
    13. Div. of Pulmonary and Critical Care Medicine, Asan Medical Center, Univ. of Ulsan, Asanbyungwon-gil, Songpa-gu, Seoul, 138-736, Korea
    14. Dept. of Medicine, Armed Force Capital Hospital, Bundang-gu, Seongnam-si, Kyonggi-do, Korea
文摘
Background Interleukin-8 (IL-8) is a potent chemo-attractant cytokine responsible for neutrophil infiltration in lungs with idiopathic pulmonary fibrosis (IPF). The IL-8 protein and mRNA expression are increased in the lung with IPF. We evaluated the effect of single nucleotide polymorphisms (SNPs) of the IL-8 gene on the risk of IPF. Methods One promoter (rs4073T>A) and two intronic SNPs (rs2227307T>G and rs2227306C>T) of the IL-8 genes were genotyped in 237 subjects with IPF and 456 normal controls. Logistic regression analysis was applied to evaluate the association of these SNPs with IPF. IL-8 in BAL fluids was measured using a quantitative sandwich enzyme immunoassay, and promoter activity was assessed using the luciferase reporter assay. Results The minor allele frequencies of rs4073T>A and rs2227307T>G were significantly lower in the 162 subjects with surgical biopsy-proven IPF and 75 subjects with clinical IPF compared with normal controls in the recessive model (OR = 0.46 and 0.48, p = 0.006 and 0.007, respectively). The IL-8 protein concentration in BAL fluids significantly increased in 24 subjects with IPF compared with 14 controls (p = 0.009). Nine IPF subjects homozygous for the rs4073 T>A common allele exhibited higher levels of the IL-8 protein compared with six subjects homozygous for the minor allele (p = 0.024). The luciferase activity of the rs4073T>A common allele was significantly higher than that of the rs4073T>A minor allele (p = 0.002). Conclusion The common allele of a promoter SNP, rs4073T>A, may increase susceptibility to the development of IPF via up-regulation of IL-8.

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