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Functional SNP in the microRNA-367 binding site in the 3′UTR of the calcium channel ryanodine receptor gene 3 (RYR3) affects breast cancer risk and calcification

机译:钙通道ryanodine受体基因3(RYR3)3UTR中microRNA-367结合位点的功能性SNP影响乳腺癌风险和钙化

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摘要

We have evaluated and provided evidence that the ryanodine receptor 3 gene (RYR3), which encodes a large protein that forms a calcium channel, is important for the growth, morphology, and migration of breast cancer cells. A putative binding site for microRNA-367 (miR-367) exists in the 3′UTR of RYR3, and a genetic variant, rs1044129 A→G, is present in this binding region. We confirmed that miR-367 regulates the expression of a reporter gene driven by the RYR3 3′UTR and that the regulation was affected by the RYR3 genotype. A thermodynamic model based on base pairing and the secondary structure of the RYR3 mRNA and miR-367 miRNA showed that miR-367 had a higher binding affinity for the A genotype than for the G genotype. The rs1044129 SNP was genotyped in 1,532 breast cancer cases and 1,600 healthy Chinese women. The results showed that compared with the AA genotype, G was a risk genotype for breast cancer development and was also associated with breast cancer calcification and poor survival. Thus, rs1044129 is a unique SNP that resides in a miRNA-gene regulatory loop that affects breast cancer risk, calcification, and survival.
机译:我们已经评估并提供了证据,证明编码乳腺癌蛋白质的钙通道的ryanodine受体3基因(RYR3)对乳腺癌细胞的生长,形态和迁移很重要。微小的RNA-367(miR-367)的假定结合位点存在于RYR3的3'UTR中,并且该结合区存在遗传变异rs1044129 A→G。我们证实,miR-367调节由RYR3 3'UTR驱动的报告基因的表达,并且该调节受到RYR3基因型的影响。基于碱基配对以及RYR3 mRNA和miR-367 miRNA二级结构的热力学模型表明,miR-367对A基因型的结合亲和力高于对G基因型的结合亲和力。 rs1044129 SNP在1,532例乳腺癌病例和1,600例中国健康女性中进行了基因分型。结果表明,与AA基因型相比,G是乳腺癌发展的危险基因型,并且还与乳腺癌钙化和不良的生存率相关。因此,rs1044129是一个独特的SNP,存在于影响乳腺癌风险,钙化和生存的miRNA基因调控环中。

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