Subramaniam Sugarniya, Jeet Varinder, Gunter Jennifer H, Clements Judith A, Batra Jyotsna
School of Biomedical Sciences, Faculty of Health, Institute of Health and Biomedical Innovation, Queensland University of Technology, Brisbane 4000, Australia.
Australian Prostate Cancer Research Centre-Queensland (APCRC-Q), Translational Research Institute, Queensland University of Technology, Woolloongabba 4102, Australia.
Cancers (Basel). 2021 Jul 17;13(14):3582. doi: 10.3390/cancers13143582.
Emerging evidence has revealed that genetic variations in microRNA (miRNA) binding sites called miRSNPs can alter miRNA binding in an allele-specific manner and impart prostate cancer (PCa) risk. Two miRSNPs, rs1530865 (G > C) and rs2357637 (C > A), in the 3' untranslated region of pyruvate dehydrogenase kinase 1 (PDK1) have been previously reported to be associated with PCa risk. However, these results have not been functionally validated.
In silico analysis was used to predict miRNA-PDK1 interactions and was tested using PDK1 knockdown, miRNA overexpression and reporter gene assay.
PDK1 expression was found to be upregulated in PCa metastasis. Further, our results show that PDK1 suppression reduced the migration, invasion, and glycolysis of PCa cells. Computational predictions showed that miR-3916, miR-3125 and miR-3928 had a higher binding affinity for the C allele than the G allele for the rs1530865 miRSNP which was validated by reporter gene assays. Similarly, miR-2116 and miR-889 had a higher affinity for the A than C allele of the rs2357637 miRSNP. Overexpression of miR-3916 and miR-3125 decreased PDK1 protein levels in cells expressing the rs1530865 SNP C allele, and miR-2116 reduced in cells with the rs2357637 SNP A allele.
The present study is the first to report the regulation of the PDK1 gene by miRNAs in an allele-dependent manner and highlights the role of PDK1 in metabolic adaption associated with PCa progression.
新出现的证据表明,称为miRSNPs的微小RNA(miRNA)结合位点的基因变异可以以等位基因特异性方式改变miRNA结合,并赋予前列腺癌(PCa)风险。丙酮酸脱氢酶激酶1(PDK1)3'非翻译区的两个miRSNPs,rs1530865(G>C)和rs2357637(C>A),此前已被报道与PCa风险相关。然而,这些结果尚未得到功能验证。
采用计算机分析预测miRNA-PDK1相互作用,并通过PDK1敲低、miRNA过表达和报告基因检测进行验证。
发现PDK1表达在PCa转移中上调。此外,我们的结果表明,PDK1抑制降低了PCa细胞的迁移、侵袭和糖酵解。计算预测表明,对于rs1530865 miRSNP,miR-3916、miR-3125和miR-3928对C等位基因的结合亲和力高于G等位基因,这通过报告基因检测得到验证。同样,对于rs2357637 miRSNP,miR-2116和miR-889对A等位基因的亲和力高于C等位基因。miR-3916和miR-3125的过表达降低了表达rs1530865 SNP C等位基因的细胞中PDK1蛋白水平,而miR-2116降低了具有rs2357637 SNP A等位基因的细胞中PDK1蛋白水平。
本研究首次报道了miRNA以等位基因依赖方式对PDK1基因的调控,并突出了PDK1在与PCa进展相关的代谢适应中的作用。