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C421A(Q141K)多态性增强了ATP结合盒转运蛋白ABCG2的3'非翻译区(3'-UTR)依赖性调控。

The C421A (Q141K) polymorphism enhances the 3'-untranslated region (3'-UTR)-dependent regulation of ATP-binding cassette transporter ABCG2.

作者信息

Ripperger Anne, Benndorf Ralf A

机构信息

Martin-Luther-University Halle-Wittenberg, Department of Clinical Pharmacy and Pharmacotherapy, Halle (Saale), Germany.

Martin-Luther-University Halle-Wittenberg, Department of Clinical Pharmacy and Pharmacotherapy, Halle (Saale), Germany.

出版信息

Biochem Pharmacol. 2016 Mar 15;104:139-47. doi: 10.1016/j.bcp.2016.02.011. Epub 2016 Feb 21.

Abstract

The impact of the gout-causing C421A (Q141K) single nucleotide polymorphism (SNP) on ABC transporter ABCG2 expression and function has been extensively characterized. However, the influence of the C421A SNP on 3'-UTR-dependent ABCG2 regulation has not been analysed so far. To elucidate this matter, we generated vectors for expression of either the ABCG2 coding sequence (ORF) or the ABCG2 ORF fused to its 3'-UTR, inserted the C421A mutation via site-directed mutagenesis and expressed wild-type and C421A-mutated ABCG2 transcripts in HEK293-Tet-On cells. As shown previously, the C421A SNP significantly reduced ABCG2 protein levels in ABCG2 ORF-transfected HEK293-Tet-On cells. Interestingly, the presence of the 3'-UTR in the ABCG2 transcript dramatically reduced ABCG2 protein content in cells transfected with the C421A variant but not significantly in those transfected with ABCG2 wild-type sequence, whereas ABCG2 mRNA levels were similar. siRNA-mediated DICER1 knockdown to reduce cellular microRNA biogenesis and selective mutation of putative microRNA binding sites within the ABCG2 3'-UTR partially antagonized C421A-associated reduction of ABCG2 protein content but did not significantly affect wild-type ABCG2 protein levels. In addition, antagomir-mediated inhibition of two microRNAs (hsa-miR-519c and hsa-miR-328) again partially reversed C421A-associated ABCG2 translational repression, thereby indicating that the C421A SNP may facilitate microRNA-dependent repression of ABCG2 protein translation. We conclude from our results that the C421A SNP may lead to reduced ABCG2 protein levels not only by affecting cellular protein stability but also via enhanced microRNA-dependent ABCG2 repression. Moreover, tissue-specific variation in ABCG2 3'-UTR processing may profoundly affect ABCG2 expression levels in individuals carrying the C421A mutation.

摘要

导致痛风的C421A(Q141K)单核苷酸多态性(SNP)对ABC转运蛋白ABCG2表达和功能的影响已得到广泛研究。然而,迄今为止尚未分析C421A SNP对3'-UTR依赖性ABCG2调控的影响。为阐明这一问题,我们构建了用于表达ABCG2编码序列(开放阅读框,ORF)或与3'-UTR融合的ABCG2 ORF的载体,通过定点诱变插入C421A突变,并在HEK293-Tet-On细胞中表达野生型和C421A突变的ABCG2转录本。如先前所示,C421A SNP显著降低了ABCG2 ORF转染的HEK293-Tet-On细胞中ABCG2蛋白水平。有趣的是,ABCG2转录本中3'-UTR的存在显著降低了用C421A变体转染的细胞中ABCG2蛋白含量,但在用ABCG2野生型序列转染的细胞中无显著降低,而ABCG2 mRNA水平相似。通过小干扰RNA(siRNA)介导的DICER1敲低以减少细胞微小RNA生物合成以及对ABCG2 3'-UTR内假定微小RNA结合位点的选择性突变,部分拮抗了C421A相关的ABCG2蛋白含量降低,但未显著影响野生型ABCG2蛋白水平。此外,抗微小RNA介导的对两种微小RNA(hsa-miR-519c和hsa-miR-328)的抑制再次部分逆转了C421A相关的ABCG2翻译抑制,从而表明C421A SNP可能促进微小RNA依赖性的ABCG2蛋白翻译抑制。我们从结果中得出结论,C421A SNP可能不仅通过影响细胞蛋白稳定性,还通过增强微小RNA依赖性的ABCG2抑制导致ABCG2蛋白水平降低。此外,ABCG2 3'-UTR加工的组织特异性差异可能深刻影响携带C421A突变个体的ABCG2表达水平。

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