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首页> 外文期刊>Clinical and experimental ophthalmology >Glutathione S-transferase omega-2 polymorphism Asn142Asp modifies the risk of age-related cataract in smokers and subjects exposed to ultraviolet irradiation
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Glutathione S-transferase omega-2 polymorphism Asn142Asp modifies the risk of age-related cataract in smokers and subjects exposed to ultraviolet irradiation

机译:谷胱甘肽S-转移酶omega-2多态性Asn142Asp可改善吸烟者和受紫外线照射的受试者与年龄有关的白内障的风险

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Background: Glutathione S-transferase omega-1 and 2 have a unique range of enzymatic activities, including the regeneration of ascorbate by their dehydroascorbate reductase activities. Because these enzymes could have a protective role from oxidative damage in the lens, the question of whether the two coding glutathione S-transferase omega polymorphisms confer the risk of age-related cataract was addressed. Methods: rs4925 (Ala140Asp) of glutathione S-transferase omega-1 and rs156697 (Asn142Asp) of glutathione S-transferase omega-2 polymorphisms in 100 patients with age-related cataract and 130 controls were assessed. Results: Presence of one mutant GSTO1*Asp or GSTO2*Asp allele did not contribute independently towards the risk of cataract; however, homozygous carriers of GSTO1*Asp/GSTO2*Asp haplotype demonstrated 3.42-fold enhanced risk of cataract development (95% confidence interval=0.84-13.93; P=0.086). When GSTO genotype was analysed in association with smoking or professional exposure to ultraviolet irradiation, carriers of at least one mutant GSTO2*Asp allele had increased risk of cataract development in comparison with individuals with wild-type GSTO2*Asn/Asn with no history of smoking or ultraviolet exposure (odds ratio=6.89, 95% confidence interval=1.81-16.21, P=0.005; odds ratio=4.10, 95% confidence interval=1.23-13.74, P=0.022, respectively). Regarding the distribution of particular glutathione S-transferase omega genotype and cataract type, the highest frequency of mutant GSTO2*Asp allele was found in patients with nuclear cataract. Conclusion: The results indicate that mutant GSTO2*Asp genotype is associated with increased risk of age-related cataract in smokers and ultraviolet-exposed subjects, suggesting a role of inefficient ascorbate regeneration in cataract development.
机译:背景:谷胱甘肽S-转移酶omega-1和2具有独特的酶活性范围,包括通过其脱氢抗坏血酸还原酶活性再生抗坏血酸。由于这些酶可能对晶状体的氧化损伤具有保护作用,因此解决了两个编码的谷胱甘肽S-转移酶ω多态性是否赋予与年龄有关的白内障风险的问题。方法:对100例年龄相关性白内障患者和130例对照者的谷胱甘肽S-转移酶omega-1多态性的rs4925(Ala140Asp)和谷胱甘肽S-转移酶omega-2的rs156697(Asn142Asp)进行了评估。结果:一个突变体GSTO1 * Asp或GSTO2 * Asp等位基因的存在并不能独立地导致白内障的发生。然而,GSTO1 * Asp / GSTO2 * Asp单倍型的纯合子携带者患白内障的风险增加了3.42倍(95%置信区间= 0.84-13.93; P = 0.086)。当分析GSTO基因型与吸烟或专业暴露于紫外线照射相关联时,与没有吸烟史的野生型GSTO2 * Asn / Asn个体相比,至少一种突变GSTO2 * Asp等位基因的携带者白内障发生的风险增加或紫外线暴露(赔率= 6.89,95%置信区间= 1.81-16.21,P = 0.005;优势比= 4.10,95%置信区间= 1.23-13.74,P = 0.022)。关于特定的谷胱甘肽S-转移酶ω基因型和白内障类型的分布,在核性白内障患者中发现突变型GSTO2 * Asp等位基因的频率最高。结论:结果表明,突变的GSTO2 * Asp基因型与吸烟者和紫外线暴露者中年龄相关性白内障的风险增加相关,表明低效抗坏血酸再生在白内障发展中的作用。

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