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Identification and validation of microRNAs directly regulating the UDP-glucuronosyltransferase 1A subfamily enzymes by a functional genomics approach

机译:通过功能基因组学方法鉴定和验证直接调节UDP-葡萄糖醛酸转移酶1A亚家族酶的microRNA

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摘要

Posttranscriptional repression of UDP-glucuronosyltransferase (UGT) 1A expression by microRNAs (miRNAs) may be an important mechanism underlying interindividual variability in drug glucuronidation. Furthermore, the UGT1A 3’-UTR shared by all UGT1A enzymes is polymorphic, containing three linked SNPs (rs10929303, rs1042640, and rs8330) that could influence miRNA binding. The aim of this study was to identify the complete complement of miRNAs that could regulate UGT1A expression through binding to the reference and/or common variant UGT1A 3’-UTR. Luciferase reporter plasmids containing either the reference or variant UGT1A 3’-UTR were screened against a 2,048 human miRNA library to identify those miRNAs that decrease luciferase activity by at least 30% when co-transfected into HEK293 cells. Four novel miRNAs (miR-103b, miR-141–3p, miR-200a-3p, and miR-376b-3p) were identified that repressed both reference and variant UGT1A 3’-UTR, while two other miRNAs selectively repressed the reference (miR-1286) or variant (miR-21–3p) 3’-UTR. Deletion and mutagenesis studies confirmed the binding site location for each miRNA. rs8330 disrupted miR-1286 binding to the reference UGT1A 3’-UTR, while rs10929303 enhanced miR-21–3p binding to the variant 3’-UTR. Transfection of miR-21–3p, miR-103b, miR-141–3p, miR-200a-3p, and miR-376b-3p mimics into LS180 human intestinal cells showed repression of UGT1A1 and UGT1A6 mediated glucuronidation and mRNA without affecting UGT2B7 activity or mRNA. Furthermore, transfection of miR-21–3p, miR-141–3p, and miR-200a-3p into primary human hepatocytes, repressed UGT1A1 activity and mRNA without affecting CYP3A activity. Finally, miR-21–3p and miR-200a-3p expression were negatively correlated with UGT1A6 activity and mRNA in human liver samples. Thus, UGT1A is regulated by multiple miRNAs with some showing allele-dependent effects.
机译:microRNA(miRNA)对UDP-葡萄糖醛酸转移酶(UGT)1A表达的转录后抑制可能是药物葡萄糖醛酸苷化个体间差异基础的重要机制。此外,所有UGT1A酶共有的UGT1A 3'-UTR是多态的,包含三个可能影响miRNA结合的SNP(rs10929303,rs1042640和rs8330)。这项研究的目的是确定可以通过与参考和/或常见变体UGT1A 3'-UTR结合来调节UGT1A表达的miRNA的完整互补物。针对2,048个人类miRNA文库筛选了包含参考或变体UGT1A 3'-UTR的荧光素酶报告质粒,以鉴定那些共转染入HEK293细胞后可使荧光素酶活性降低至少30%的miRNA。鉴定出四个新颖的​​miRNA(miR-103b,miR-141-3p,miR-200a-3p和miR-376b-3p)抑制了参比和变体UGT1A 3'-UTR,而另外两个miRNA有选择地抑制了参比( miR-1286)或变体(miR-21-3p)3'-UTR。缺失和诱变研究证实了每种miRNA的结合位点位置。 rs8330破坏了miR-1286与参考UGT1A 3'-UTR的结合,而rs10929303增强了miR-21-3p与变体3'-UTR的结合。将miR-21-3p,miR-103b,miR-141-3p,miR-200a-3p和miR-376b-3p模拟物转染到LS180人肠细胞中,显示出UGT1A1和UGT1A6介导的葡萄糖醛酸苷化和mRNA的抑制,而不会影响UGT2B7的活性或mRNA。此外,将miR-21-3p,miR-141-3p和miR-200a-3p转染到原代人肝细胞中可抑制UGT1A1活性和mRNA,而不会影响CYP3A活性。最后,miR-21-3p和miR-200a-3p的表达与人类肝脏样品中UGT1A6的活性和mRNA呈负相关。因此,UGT1A受多种miRNA调控,其中一些表现出等位基因依赖性效应。

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