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首页> 外文期刊>The journal of clinical endocrinology and metabolism >Altered MicroRNA Profile in Osteoporosis Caused by Impaired WNT Signaling.
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Altered MicroRNA Profile in Osteoporosis Caused by Impaired WNT Signaling.

机译:WNT信号受损引起的骨质疏松症中MicroRNA谱的改变。

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WNT signaling is fundamental to bone health, and its aberrant activation leads to skeletal pathologies. The heterozygous missense mutation p.C218G in WNT1, a key WNT pathway ligand, leads to severe early-onset and progressive osteoporosis with multiple peripheral and spinal fractures. Despite the severe skeletal manifestations, conventional bone turnover markers are normal in mutation-positive patients. This study sought to explore the circulating microRNA (miRNA) pattern in patients with impaired WNT signaling. A cross-sectional cohort study at a university hospital. Altogether, 12 mutation-positive (MP) subjects (median age, 39 years; range, 11 to 76 years) and 12 mutation-negative (MN) subjects (35 years; range, 9 to 59 years) from two Finnish families with WNT1 osteoporosis due to the heterozygous p.C218G WNT1 mutation. Serum samples were screened for 192 miRNAs using quantitative polymerase chain reaction. Findings were compared between WNT1 MP and MN subjects. The pattern of circulating miRNAs was significantly different in the MP subjects compared with the MN subjects, with two upregulated (miR-18a-3p and miR-223-3p) and six downregulated miRNAs (miR-22-3p, miR-31-5p, miR-34a-5p, miR-143-5p, miR-423-5p, and miR-423-3p). Three of these (miR-22-3p, miR-34a-5p, and miR-31-5p) are known inhibitors of WNT signaling: miR-22-3p and miR-34a-5p target WNT1 messenger RNA, and miR-31-5p is predicted to bind to WNT1 3'UTR. The circulating miRNA pattern reflects WNT1 mutation status. The findings suggest that the WNT1 mutation disrupts feedback regulation between these miRNAs and WNT1, providing insights into the pathogenesis of WNT-related bone disorders. These miRNAs may have potential in the diagnosis and treatment of osteoporosis.
机译:WNT信号是骨骼健康的基础,其异常激活会导致骨骼病变。 WNT1(一个重要的WNT途径配体)中的杂合错义突变p.C218G导致严重的早期发作和进行性骨质疏松症,并伴有多处周围和脊柱骨折。尽管存在严重的骨骼表现,但在突变阳性患者中常规的骨转换标志物是正常的。这项研究试图探索WNT信号受损患者的循环microRNA(miRNA)模式。在大学医院进行的横断面队列研究。来自两个WNT1芬兰家庭的12位突变阳性(MP)受试者(中位年龄39岁;范围11至76岁)和12位突变阴性(MN)受试者(35岁;范围9至59岁)。 p.C218G WNT1杂合导致骨质疏松。使用定量聚合酶链反应筛选血清样品中的192个miRNA。比较了WNT1 MP和MN受试者的发现。与MN受试者相比,MP受试者中循环miRNA的模式显着不同,其中两个上调的miRNA(miR-18a-3p和miR-223-3p)和六个下调的miRNA(miR-22-3p,miR-31-5p ,miR-34a-5p,miR-143-5p,miR-423-5p和miR-423-3p)。其中三种(miR-22-3p,miR-34a-5p和miR-31-5p)是WNT信号的已知抑制剂:miR-22-3p和miR-34a-5p靶向WNT1信使RNA,以及miR-31预计-5p与WNT1 3'UTR结合。循环的miRNA模式反映了WNT1突变状态。这些发现表明,WNT1突变破坏了这些miRNA与WNT1之间的反馈调节,从而为WNT相关骨病的发病机理提供了见识。这些miRNA在骨质疏松症的诊断和治疗中可能具有潜力。

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