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OCT1 和 MATE1 转运蛋白多态性与二甲双胍反应的相互作用。

Interaction between polymorphisms in the OCT1 and MATE1 transporter and metformin response.

机构信息

Department of Epidemiology, Erasmus MC, Rotterdam, The Netherlands.

出版信息

Pharmacogenet Genomics. 2010 Jan;20(1):38-44. doi: 10.1097/FPC.0b013e328333bb11.

Abstract

OBJECTIVE

Metformin is transported into the hepatocyte by organic cation transporter 1 (OCT1) and out of the hepatocyte by multidrug and toxin extrusion 1 (MATE1). Recently, we discovered that polymorphisms rs622342 A>C in the SLC22A1 gene, coding for OCT1, and rs2289669 G>A in the SLC47A1 gene, coding for MATE1, are associated with the degree of glucose lowering by metformin. In this study, we assessed whether there exists an interaction between these two polymorphisms.

METHODS

We identified all incident metformin users in the Rotterdam Study, a population-based cohort study. Multiplicative interaction between the polymorphisms and change in HbA1c levels was analyzed in 98 incident metformin users.

RESULTS

In incident metformin users with the OCT1 rs622342 AA genotype, genetic variation at the MATE1 rs2289669 polymorphism was not associated with change in HbA1c levels [-0.10; 95% confidence interval (CI): -0.35 to 0.14; P=0.39]. In users with the OCT1 rs622342 AC genotype, there was a tendency between rs2289669 polymorphisms and change in HbA1c (-0.31; 95% CI: -0.65 to 0.03; P=0.070) and in users with the OCT1 rs622342 CC genotype there was a significant association with change in HbA1c levels (-0.68; 95% CI: -1.06 to -0.30; P=0.005). The multiplicative interaction between these two genotypes was statistically significant (-0.52; 95% CI: -0.94 to -0.11; P=0.015).

CONCLUSION

The effect of the MATE1 rs2289669 polymorphism on the glucose lowering effect of metformin is larger in incident users with the OCT1 rs622342 CC genotype than in incident users with the AA genotype. The effect in incident users with the OCT1 rs622342 AC genotype is in between.

摘要

目的

二甲双胍通过有机阳离子转运蛋白 1(OCT1)进入肝细胞,并通过多药和毒素外排蛋白 1(MATE1)从肝细胞中排出。最近,我们发现 SLC22A1 基因(编码 OCT1)的 rs622342A>C 多态性和 SLC47A1 基因(编码 MATE1)的 rs2289669G>A 多态性与二甲双胍降低血糖的程度有关。在这项研究中,我们评估了这两种多态性之间是否存在相互作用。

方法

我们在 Rotterdam 研究中确定了所有新诊断的二甲双胍使用者,这是一项基于人群的队列研究。在 98 名新诊断的二甲双胍使用者中,分析了这两种多态性与 HbA1c 水平变化之间的相乘交互作用。

结果

在 OCT1 rs622342 AA 基因型的新诊断二甲双胍使用者中,MATE1 rs2289669 多态性的遗传变异与 HbA1c 水平的变化无关[-0.10;95%置信区间(CI):-0.35 至 0.14;P=0.39]。在 OCT1 rs622342 AC 基因型的使用者中,rs2289669 多态性与 HbA1c 的变化之间存在趋势[-0.31;95%CI:-0.65 至 0.03;P=0.070],而在 OCT1 rs622342 CC 基因型的使用者中,与 HbA1c 水平的变化存在显著关联[-0.68;95%CI:-1.06 至 -0.30;P=0.005]。这两种基因型之间的相乘交互作用具有统计学意义[-0.52;95%CI:-0.94 至 -0.11;P=0.015]。

结论

与 OCT1 rs622342 AA 基因型的新诊断使用者相比,MATE1 rs2289669 多态性对二甲双胍降低血糖效果的影响在 OCT1 rs622342 CC 基因型的新诊断使用者中更大。在 OCT1 rs622342 AC 基因型的新诊断使用者中的影响则介于两者之间。

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