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Osteoporosis genome‐wide association study variant c.3781 C>A is regulated by a novel anti‐osteogenic factor miR‐345‐5p

机译:骨质疏松症全基因组关联研究变异C.3781 C> A由新型抗骨种原因MIR-345-5P调节

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摘要

Abstract Upstream transcription factor family member 3 ( USF3 ) c.3781CA (rs1026364) in the 3′‐untranslated region (3′‐UTR) has been firmly associated with bone mineral density (BMD) in genome‐wide association study (GWAS). However, the molecular mechanism by which it influences BMD and osteoporosis is unknown. Bioinformatics analyses suggested that the risk c.3781A allele creates a target site for hsa‐miR‐345‐5p binding. Luciferase assay validated that the c.3781A allele displayed significantly lower luciferase activities than the c.3781C allele in the human osteoblast cell line hFOB1.19, osteosarcoma cell lines U‐2OS and Saos‐2, and embryonic kidney cell line 293T. Furthermore, hsa‐miR‐345‐5p regulated USF3 expression on both messenger RNA and protein levels in hFOB1.19 and U937 cells with heterozygous A/C genotype. Transfection of hsa‐miR‐345‐5p antagomiR in heterozygous hFOB1.19 cells significantly increased the expression of osteogenic marker genes RUNX2, OSTERIX, COL1A1, ALP, OPN, OCN , and alkaline phosphatase activity and matrix mineralization level. Importantly, we found that hsa‐miR‐345‐5p also inhibits osteoblast maturation in cell lines U‐2OS with hsa‐miR‐345‐5p nonbinding C/C genotype by targeting RUNX3 and SMAD1 . Our findings uncovered a novel pathogenetic mechanism of osteoporosis by GWAS variant c.3781CA‐mediated disruption of hsa‐miR‐345‐5p binding at the 3′‐UTR of USF3 and the functional role of hsa‐miR‐345‐5p in osteogenic differentiation.
机译:摘要上游转录因子家族成员3(USF3)C.3781C> a(rs1026364)在3'-未转换的区域(3'-UTR)中牢固地与基因组关联研究中的骨矿物密度(BMD)相关(GWAS) )。然而,它影响BMD和骨质疏松症的分子机制未知。生物信息学分析表明,风险C.3781A等位基因为HSA-MIR-345-5P结合创造了目标网站。荧光素酶测定验证,C.3781A等位基因在人骨盆细胞系HFOB1.19中的C.3781C等位基因显着降低荧光素酶活性,骨肉瘤细胞系U-2S和SAOS-2和胚胎肾细胞系293T。此外,HSA-miR-345-5P对HFOB1.19和U937细胞的信使RNA和蛋白质水平的调节USF3表达,具有杂合子A / C基因型。在杂合HFOB1.19细胞中转染HSA-MIR-345-5P诱导型细胞显着增加了成骨显着标记基因Runx2,Osterix,COL1A1,ALP,OPN,OCN和碱性磷酸酶活性和基质矿化水平的表达。重要的是,我们发现HSA-MIR-345-5P通过靶向RUNX3和SMAD1,HSA-MIR-345-5P通过HSA-MIR-345-5P非粘附性C / C基因型抑制细胞系U-2S中的成骨细胞成熟。我们的研究结果发现了Gwas变异C.3781C&GT的一种新型骨质疏松症的致病机制; a介导的HSA-miR-345-5p在USF3的3'-UTR结合中断以及HSA-MIR-345-5P的功能作用成骨分化。

著录项

  • 来源
    《Human mutation》 |2020年第3期|共10页
  • 作者单位

    Hubei Key Laboratory of Genetic Regulation and Integrative Biology School of Life SciencesCentral;

    Hubei Key Laboratory of Genetic Regulation and Integrative Biology School of Life SciencesCentral;

    Hubei Key Laboratory of Genetic Regulation and Integrative Biology School of Life SciencesCentral;

    Hubei Key Laboratory of Genetic Regulation and Integrative Biology School of Life SciencesCentral;

    Hubei Key Laboratory of Genetic Regulation and Integrative Biology School of Life SciencesCentral;

    Hubei Key Laboratory of Genetic Regulation and Integrative Biology School of Life SciencesCentral;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
  • 关键词

    GWAS SNP; miR‐345‐5p; osteoporosis; RUNX3; SMAD1; USF3;

    机译:SNP仆人;mir-345-5p;骨质疏松症;runx3;smad1;USF3;

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