首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >The role of GSTM1, GSTT1, GSTP1, and OGG1 polymorphisms in type 2 diabetes mellitus risk: A case-control study in a Turkish population
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The role of GSTM1, GSTT1, GSTP1, and OGG1 polymorphisms in type 2 diabetes mellitus risk: A case-control study in a Turkish population

机译:GSTM1,GSTT1,GSTP1和OGG1多态性在2型糖尿病风险中的作用:在土耳其人群中的病例对照研究

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The aim of the present study was to investigate the role of some polymorphisms in GSTs (GSTM1, GSTT1 and GSTP1) which are very important protective mechanisms against oxidative stress and in OGG1 gene which is important in DNA repair, against the risk of type 2 diabetes mellitus (T2DM).127 T2DM and 127 control subjects were included in the study. DNA was extracted from whole blood. Analyses of GSTM1 and GSTT1 gene polymorphisms were performed by allele specific PCR and those of GSTP1 Ile105Val and OGG1 Ser326Cys by PCR-RFLP. Our data showed that GSTM1 null genotype frequency had a 2-6 times statistically significant increase in a patient group (OR = 3.841, 95% CI = 2.280-6.469, p< 0.001) but no significance with GSTT1 null/positive and GSTP1 Ile105Val genotypes was observed. When T2DM patients with OGG1 Ser326Cys polymorphism were compared with patients with a wild genotype, a 2-3 times statistically significant increase has been observed (OR 1.858, 95% CI = 1.099-3.141, p= 0.021). The combined effect of GSTM1 null and OGG1 variant genotype frequencies has shown to be statistically significant. Similarly, the risk of T2DM was statistically increased with GSTM1 null (OR = 3.841, 95% CI = 2.28-6.469), GSTT1 null + GSTP1 (H + M) (OR = 4.118, 95% CI = 1.327-12.778) and GSTM1 null + OGG1 (H + M) (OR = 3.322, 95% CI = 1.898-5.816) and GSTT1 null + OGG1 (H + M) (OR = 2.179, 95% CI = 1.083-4.386) as compared to the control group. According to our study results, it has been observed that the combined evaluation of GSTM1- GSTT1- GSTP1 and OGG1 Ser326Cys gene polymorphisms can be used as candidate genes in the etiology of T2DM, especially in the development of T2DM.
机译:本研究的目的是研究GST中的某些多态性(GSTM1,GSTT1和GSTP1)的作用,它们是抗氧化应激的重要保护机制,并且在OGG1基因中很重要,而OGG1基因在DNA修复中很重要,可以抵抗2型糖尿病研究(T2DM)。该研究包括127名T2DM和127名对照受试者。从全血中提取DNA。通过等位基因特异性PCR进行GSTM1和GSTT1基因多态性分析,通过PCR-RFLP分析GSTP1 Ile105Val和OGG1 Ser326Cys多态性。我们的数据显示,患者组中GSTM1无效基因型频率有2-6倍的统计学显着性增加(OR = 3.841,95%CI = 2.280-6.469,p <0.001),但对于GSTT1无效/阳性和GSTP1 Ile105Val基因型无显着性被观测到。当将具有OGG1 Ser326Cys多态性的T2DM患者与野生基因型患者进行比较时,观察到统计学意义上的增加2-3倍(OR 1.858,95%CI = 1.099-3.141,p = 0.021)。 GSTM1 null和OGG1变异基因型频率的组合效应已显示具有统计学意义。同样,在GSTM1为零(OR = 3.841,95%CI = 2.28-6.469),GSTT1为零+ GSTP1(H + M)(OR = 4.118,95%CI = 1.327-12.778)和GSTM1的情况下,T2DM的风险在统计学上增加了null + OGG1(H + M)(OR = 3.322,95%CI = 1.898-5.816)和GSTT1 null + OGG1(H + M)(OR = 2.179,95%CI = 1.083-4.386) 。根据我们的研究结果,已观察到GSTM1- GSTT1- GSTP1和OGG1 Ser326Cys基因多态性的联合评估可以用作T2DM病因的候选基因,尤其是在T2DM的发展中。

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