首页> 外文期刊>Toxins >Is Increased Susceptibility to Balkan Endemic Nephropathy in Carriers of Common GSTA1 (*A/*B) Polymorphism Linked with the Catalytic Role of GSTA1 in Ochratoxin A Biotransformation? Serbian Case Control Study and In Silico Analysis
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Is Increased Susceptibility to Balkan Endemic Nephropathy in Carriers of Common GSTA1 (*A/*B) Polymorphism Linked with the Catalytic Role of GSTA1 in Ochratoxin A Biotransformation? Serbian Case Control Study and In Silico Analysis

机译:常见GSTA1(* A / * B)多态性携带者对巴尔干地方性肾病的易感性增加与G曲霉毒素A生物转化中GSTA1的催化作用有关吗?塞尔维亚案例控制研究和计算机分析

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Although recent data suggest aristolochic acid as a putative cause of Balkan endemic nephropathy (BEN), evidence also exists in favor of ochratoxin A (OTA) exposure as risk factor for the disease. The potential role of xenobiotic metabolizing enzymes, such as the glutathione transferases (GSTs), in OTA biotransformation is based on OTA glutathione adducts (OTHQ-SG and OTB-SG) in blood and urine of BEN patients. We aimed to analyze the association between common GSTA1, GSTM1, GSTT1, and GSTP1 polymorphisms and BEN susceptibility, and thereafter performed an in silico simulation of particular GST enzymes potentially involved in OTA transformations. GSTA1, GSTM1, GSTT1 and GSTP1 genotypes were determined in 207 BEN patients and 138 non-BEN healthy individuals from endemic regions by polymerase chain reaction (PCR). Molecular modeling in silico was performed for GSTA1 protein. Among the GST polymorphisms tested, only GSTA1 was significantly associated with a higher risk of BEN. Namely, carriers of the GSTA1*B gene variant, associated with lower transcriptional activation, were at a 1.6-fold higher BEN risk than those carrying the homozygous GSTA1*A/*A genotype (OR = 1.6; p = 0.037). In in silico modeling, we found four structures, two OTB-SG and two OTHQ-SG, bound in a GSTA1 monomer. We found that GSTA1 polymorphism was associated with increased risk of BEN, and suggested, according to the in silico simulation, that GSTA1-1 might be involved in catalyzing the formation of OTHQ-SG and OTB-SG conjugates.
机译:尽管最近的数据表明马兜铃酸是巴尔干地方性肾病(BEN)的可能原因,但也有证据表明exposure曲毒素A(OTA)暴露是该疾病的危险因素。外源性生物代谢酶(例如谷胱甘肽转移酶(GST))在OTA生物转化中的潜在作用是基于BEN患者血液和尿液中的OTA谷胱甘肽加合物(OTHQ-SG和OTB-SG)。我们旨在分析常见的GSTA1,GSTM1,GSTT1和GSTP1多态性与BEN敏感性之间的关联,然后对可能参与OTA转化的特定GST酶进行计算机模拟。通过聚合酶链反应(PCR)在来自流行地区的207名BEN患者和138名非BEN健康个体中确定了GSTA1,GSTM1,GSTT1和GSTP1基因型。对GSTA1蛋白进行了计算机分子建模。在测试的GST多态性中,只有GSTA1与较高的BEN风险显着相关。即,与较低转录激活相关的GSTA1 * B基因变异携带者的BEN风险比那些携带纯合GSTA1 * A / * A基因型的携带者高1.6倍(OR = 1.6; p = 0.037)。在计算机模拟中,我们发现绑定在GSTA1单体中的四个结构,两个OTB-SG和两个OTHQ-SG。我们发现GSTA1多态性与增加的BEN风险有关,并根据计算机模拟表明,GSTA1-1可能参与了OTHQ-SG和OTB-SG共轭物的形成。

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