1) Van Eerdewegh P, Little RD, Dupuis J, et al:Association of the ADAM33 gene with asthma and bronchial hyperresponsiveness. Nature 418:426-430, 2002
2) Cakebread JA, Haitchi HM, Holloway JW, et al:The role of ADAM33 in the pathogenesis of asthma. Springer Semin Immunopathol 25:361-375, 2004
3) Howard TD, Postma DS, Jongepier H, et al:Association of a disintegrin and metalloprotease 33 (ADAM33) gene with asthma in ethnically diverse populations. J Allergy Clin Immunol 112:717-722, 2003
4) Zhang Y, Leaves NI, Anderson GG, et al:Positional cloning of a quantitative trait locus on chromosome 13q14 that influences immunoglobulin E levels and asthma. Nat Genet 34:181-186, 2003
5) Anderson GG, Leaves NI, Bhattacharyya S, et al:Positive association to IgE levels and a physical map of the 13q14 atopy locus. Eur J Hum Genet 10:266-270, 2002
6) Scanlan MJ, Gordan JD, Williamson B, et al:Antigens recognized by autologous antibody in patients with renal-cell carcinoma. Int J Cancer 83:456-464, 1999
7) Howard TD, Meyers DA, Bleecker ER. Mapping susceptibility genes for allergic diseases. Chest 123 (3 Suppl):363S-368S, 2003
8) Allen M, Heinzmann A, Noguchi E, et al:Positional cloning of a novel gene influencing asthma from chromosome 2q14. Nat Genet 35:258-263, 2003
9) Weiss ST, Raby BA:Asthma genetics 2003. Hum Mol Genet 13:R83-R89, 2004
10) Daniels SE, Bhattacharrya S, James A, et al:A genome-wide search for quantitative trait loci underlying asthma. Nature 383:247-250, 1996
11) Laitinen T, Daly MJ, Rioux JD, et al:A susceptibility locus for asthma-related traits on chromosome 7 revealed by genome-wide scan in a founder population. Nat Genet 28:87-91, 2001
12) Polvi A, Polvi T, Sevon P, et al:Physical map of an asthma susceptibility locus in 7p15-p14 and an association study of TCRG. Eur J Hum Genet 10:658-665, 2002
13) Leaves NI, Bhattacharyya S, Wiltshire S, et al:A detailed genetic map of the chromosome 7 bronchial hyper-responsiveness locus. Eur J Hum Genet 10:177-182, 2002
14) Laitinen T, Polvi A, Rydman P, et al:Characterization of a common susceptibility locus for asthma-related traits. Science 304:300-304, 2004
15) Rakoff-Nahoum S, Paglino J, Eslami-Varzaneh F, et al:Recognition of commensal microflora by toll-like receptors is required for intestinal homeostasis. Cell 118:229-241, 2004
16) 棟方充:アレルギー性疾患におけるPharmacogenetics.アレルギー・免疫 10:54-59, 2001
17) 浅野浩一郎:喘息のテーラーメイド医療.分子呼吸器病 8(3):41-47, 2004
18) Liggett SB:Polymorphisms of the beta 2-adrenergic receptor. N Engl J Med 346:536-538, 2002
19) McGraw DW, Liggett SB:Coding block and 5 leader cistron polymorphisms of the beta2-adrenergic receptor. Clin Exp Allergy Suppl 4:43-45, 1999
20) Drysdale CM, McGraw DW, Stack CB, et al:Complex promoter and coding region beta 2-adrenergic receptor haplotypes alter receptor expression and predict in vivo responsiveness. Proc Natl Acad Sci USA 97:10483-10488, 2000
21) Dishy V, Sofowora GG, Xie HG, et al:The effect of common polymorphisms of the beta2-adrenergic receptor on agonist-mediated vascular desensitization. N Engl J Med 345:1030-1035, 2001
22) Israel E, Drazen JM, Liggett SB, et al:The effect of polymorphisms of the beta(2)-adrenergic receptor on the response to regular use of albuterol in asthma. Am J Respir Crit Care Med 162:75-80, 2000
23) Taylor DR, Drazen JM, Herbison GP, et al:Asthma exacerbations during long term beta agonist use;influence of beta(2) adrenoceptor polymorphism. Thorax 55:762-767, 2000
24) In KH, Asano K, Beier D, et al:Naturally occurring mutations in the human 5-lipoxygenase gene promoter that modify transcription factor binding and reporter gene transcription. J Clin Invest 99:1130-1137, 1997
25) Drazen JM, Yandava CN, Dube L, et al:Pharmacogenetic association between ALOX5 promoter genotype and the response to anti-asthma treatment. Nat Genet 22:168-170, 1999
26) Sanak M, Pierzchalska M, Bazan-Socha S, et al:Enhanced expression of the leukotriene C(4) synthase due to overactive transcription of an allelic variant associated with aspirin-intolerant asthma. Am J Respir Cell Mol Biol 23:290-296, 2000
27) Asano K, Shiomi T, Hasegawa N, et al:Leukotriene C4 synthase gene A(-444)C polymorphism and clinical response to a CYS-LT(1) antagonist, pranlukast, in Japanese patients with moderate asthma. Pharmacogenetics 12:565-570, 2002
28) Mastalerz L, Nizankowska E, Sanak M, et al:Clinical and genetic features underlying the response of patients with bronchial asthma to treatment with a leukotriene receptor antagonist. Eur J Clin Invest 32:949-955, 2002
29) Gao PS, Huang SK:Genetic aspects of asthma. Panminerva Med 46:121-134, 2004