首页> 外文期刊>Molecular medicine. >miR-133a Regulates Vitamin K 2,3-Epoxide Reductase Complex Subunit 1 (VKORC1), a Key Protein in the Vitamin K Cycle
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miR-133a Regulates Vitamin K 2,3-Epoxide Reductase Complex Subunit 1 (VKORC1), a Key Protein in the Vitamin K Cycle

机译:miR-133a调节维生素K 2,3-环氧还原酶复合物亚基1(VKORC1),维生素K周期中的关键蛋白

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Regulation of key proteins by microRNAs (miRNAs) is an emergent field in biomedicine. Vitamin K 2,3-epoxide reductase complex subunit 1 (VKORC1) is a relevant molecule for cardiovascular diseases, since it is the target of oral anticoagulant drugs and plays a role in soft tissue calcification. The objective of this study was to determine the influence of miRNAs on the expression of VKORC1. Potential miRNAs targeting VKORC1 mRNA were searched by using online algorithms. Validation studies were carried out in HepG2 cells by using miRNA precursors; direct miRNA interaction was investigated with reporter assays. In silicostudies identified two putative conserved binding sites for miR-133a and miR-137 on VKORC1 mRNA. Ex vivo studies showed that only miR-133a was expressed in liver; transfection of miRNA precursors of miR-133a in HepG2 cells reduced VKORC1 mRNA expression in a dose-dependent manner, as assessed by quantitative reverse transcriptase-polymerase chain reaction (qRT-PCR) as well as protein expression. Reporter assays in HEK293T cells showed that miR-133a interacts with the 3′UTR of VKORC1. Additionally, miR-133a levels correlated inversely with VKORC1 mRNA levels in 23 liver samples from healthy subjects. In conclusion, miR-133a appears to have a direct regulatory effect on expression of VKORC1 in humans; this regulation may have potential importance for anticoagulant therapy or aortic calcification.
机译:microRNA(miRNA)对关键蛋白的调控是生物医学领域的一个新兴领域。维生素K 2,3-环氧化物还原酶复合物亚基1(VKORC1)是心血管疾病的相关分子,因为它是口服抗凝药物的靶标,并且在软组织钙化中起作用。这项研究的目的是确定miRNA对VKORC1表达的影响。使用在线算法搜索靶向VKORC1 mRNA的潜在miRNA。使用miRNA前体在HepG2细胞中进行了验证研究;直接的miRNA相互作用进行了记者检测。在计算机分析中,确定了VKORC1 mRNA上两个miR-133a和miR-137的保守保守结合位点。体外研究表明,只有miR-133a在肝脏中表达;通过定量逆转录酶-聚合酶链反应(qRT-PCR)和蛋白质表达评估,在HepG2细胞中转染miR-133a的miRNA前体可降低VKORC1 mRNA的表达,并呈剂量依赖性。记者在HEK293T细胞中的分析表明,miR-133a与VKORC1的3'UTR相互作用。此外,在健康受试者的23个肝样本中,miR-133a水平与VKORC1 mRNA水平成反比。总之,miR-133a似乎对VKORC1在人类中的表达具有直接的调节作用。该调节对于抗凝治疗或主动脉钙化可能具有潜在的重要性。

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