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血栓素合酶 1 基因多态性与哮喘患者阿司匹林不耐受的相关性分析。

Association analysis of thromboxane A synthase 1 gene polymorphisms with aspirin intolerance in asthmatic patients.

机构信息

Genome Research Center for Allergy & Respiratory Disease, Soonchunhyang University Bucheon Hospital, 1174 Jung-dong, Wonmi-gu, Bucheon, Gyeonggi-do, 420-767, Republic of Korea.

出版信息

Pharmacogenomics. 2011 Mar;12(3):351-63. doi: 10.2217/pgs.10.181.

Abstract

AIM

Thromboxane A synthase (TBXAS1) converts prostaglandin H to thromboxane A, a potent constrictor of smooth respiratory muscle. Thus, functional alterations of the TBXAS1 gene may contribute to aspirin-intolerant asthma (AIA).

MATERIALS & METHODS: We investigated the relationship between SNPs in the TBXAS1 gene and AIA. Asthmatics (n = 470) were categorized into AIA (20% or greater decreases in forced expiratory volume in 1 s [FEV(1)], or 15% to 19% decreases in FEV(1) with naso-ocular or cutaneous reactions) and aspirin-tolerant asthma (ATA). A total of 101 SNPs were genotyped. mRNA expression of the TBXAS1 gene by peripheral blood mononuclear cells and plasma thromboxane B2 (TXB2) concentrations were measured by reverse transcriptase (RT)-PCR and ELISA.

RESULTS

Logistic regression analysis showed that the rare allele frequency of rs6962291 in intron 9 was significantly lower in the AIA group (n = 115) than in the ATA group (n = 270) (p(corr) = 0.04). The linear regression analysis revealed a strong association of rs6962291 with the aspirin challenge-induced FEV(1) fall (p = 0.003). RT-PCR revealed an exon-12-deleted splice variant. We measured TBXAS1 mRNA levels in peripheral blood mononuclear cells. The mRNA levels of the full-length wild-type and splice variant were significantly higher in the TT homozygotes than in the AA homozygotes of rs6962291 (1.00 ± 0.18 vs 0.57 ± 0.03 and 1.00 ± 0.18 vs 0.21 ± 0.05, p = 0.047 and 0.001, respectively). The plasma TXB2 level was significantly lower in rs6962291 AA carriers than in rs6962291 TT (p = 0.016) carriers.

CONCLUSION

The rare allele of rs6962291 may play a protective role against aspirin hypersensitivity via a lower catalytic activity of the TBXAS1 gene, attributed to the increase of a nonfunctioning isoform of TBXAS1.

摘要

目的

血栓烷合酶(TBXAS1)将前列腺素 H 转化为血栓烷 A,后者是呼吸平滑肌的强力收缩剂。因此,TBXAS1 基因的功能改变可能导致阿司匹林不耐受型哮喘(AIA)。

材料与方法

我们研究了 TBXAS1 基因中的 SNP 与 AIA 之间的关系。将哮喘患者(n=470)分为 AIA(用力呼气量 [FEV1] 减少 20%或以上,或 FEV1 减少 15%至 19%,同时伴有鼻-眼或皮肤反应)和阿司匹林耐受型哮喘(ATA)。共检测了 101 个 SNP。通过逆转录酶(RT)-PCR 和 ELISA 检测外周血单核细胞中 TBXAS1 基因的 mRNA 表达和血浆血栓烷 B2(TXB2)浓度。

结果

logistic 回归分析显示,9 号内含子 rs6962291 的罕见等位基因频率在 AIA 组(n=115)显著低于 ATA 组(n=270)(校正后 p 值=0.04)。线性回归分析显示 rs6962291 与阿司匹林激发后 FEV1 下降明显相关(p=0.003)。RT-PCR 显示存在一个外显子 12 缺失的剪接变体。我们检测了外周血单核细胞中的 TBXAS1 mRNA 水平。rs6962291 的 TT 纯合子的全长野生型和剪接变体的 mRNA 水平明显高于 AA 纯合子(1.00±0.18 比 0.57±0.03 和 1.00±0.18 比 0.21±0.05,p=0.047 和 0.001)。rs6962291 AA 携带者的血浆 TXB2 水平明显低于 rs6962291 TT 携带者(p=0.016)。

结论

rs6962291 的罕见等位基因可能通过降低 TBXAS1 基因的催化活性来发挥保护作用,从而导致非功能型 TBXAS1 同工型增加,从而降低对阿司匹林的过敏反应。

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