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Metabolic Interactions of Purine Derivatives with Human ABC Transporter ABCG2: Genetic Testing to Assess Gout Risk

机译:嘌呤衍生物与人类ABC转运蛋白ABCG2的代谢相互作用:评估痛风风险的基因测试。

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摘要

In mammals, excess purine nucleosides are removed from the body by breakdown in the liver and excretion from the kidneys. Uric acid is the end product of purine metabolism in humans. Two-thirds of uric acid in the human body is normally excreted through the kidney, whereas one-third undergoes uricolysis (decomposition of uric acid) in the gut. Elevated serum uric acid levels result in gout and could be a risk factor for cardiovascular disease and diabetes. Recent studies have shown that human ATP-binding cassette transporter ABCG2 plays a role of renal excretion of uric acid. Two non-synonymous single nucleotide polymorphisms (SNPs), i.e., 421C>A (major) and 376C>T (minor), in the ABCG2 gene result in impaired transport activity, owing to ubiquitination-mediated proteosomal degradation and truncation of ABCG2, respectively. These genetic polymorphisms are associated with hyperuricemia and gout. Allele frequencies of those SNPs are significantly higher in Asian populations than they are in African and Caucasian populations. A rapid and isothermal genotyping method has been developed to detect the SNP 421C>A, where one drop of peripheral blood is sufficient for the detection. Development of simple genotyping methods would serve to improve prevention and early therapeutic intervention for high-risk individuals in personalized healthcare.
机译:在哺乳动物中,多余的嘌呤核苷通过肝脏分解和肾脏排泄而从体内清除。尿酸是人类嘌呤代谢的最终产物。人体中三分之二的尿酸通常通过肾脏排泄,而三分之一的尿液在肠道中进行尿酸溶解(尿酸分解)。血清尿酸水平升高会导致痛风,并且可能是心血管疾病和糖尿病的危险因素。最近的研究表明,人ATP结合盒转运蛋白ABCG2在肾脏尿酸排泄中起着作用。 ABCG2基因中的两个非同义单核苷酸多态性(SNPs),即421C> A(主要)和376C> T(次要),分别由于泛素化介导的蛋白体降解和ABCG2的截短而导致运输活性受损。 。这些遗传多态性与高尿酸血症和痛风有关。这些单核苷酸多态性的等位基因频率在亚洲人群中明显高于非洲和白种人人群。已经开发出一种快速等温的基因分型方法来检测SNP 421C> A,其中一滴外周血足以进行检测。简单基因分型方法的开发将有助于改善个性化医疗保健中高危人群的预防和早期治疗干预。

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