microRNA-324介导骨平衡并调节成骨细胞和破骨细胞的分化和活性。

IF 3.5 2区 医学 Q2 ENDOCRINOLOGY & METABOLISM Bone Pub Date : 2024-10-09 DOI:10.1016/j.bone.2024.117273
Dan J. Hayman , Francesca M. Johnson de Sousa Brito , Hua Lin , Amanda Prior , Gemma Charlesworth , Yao Hao , Rachel D. Pearson , Jamie Soul , Ian M. Clark , Katarzyna A. Piróg , Matt J. Barter , Rob J. van't Hof , David A. Young
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摘要

微小 RNA(miRNA)可调节其他 RNA 分子的表达。一种 miRNA 可以靶向许多转录本,从而使每种 miRNA 在许多生物通路中发挥关键作用。骨平衡的缺陷会导致常见的与年龄有关的疾病,包括骨质疏松症。血清中 miR-324-3p 的水平与骨骼维持的几个特征呈正相关。与此形成鲜明对比的是,利用体内微型计算机断层扫描和组织学方法,全球 miR-324 缺失小鼠的骨矿物质密度以及骨小梁和骨皮质厚度均有所增加,且影响程度随年龄增长而增加。miR-324 缺失小鼠骨髓中的脂质含量降低,TRAP 染色显示破骨细胞减少,组织形态学显示骨形成率增加。体内外试验表明,miR-324-null 小鼠的高骨量表型是成骨细胞活性增加和破骨细胞生成减少的结果。对成骨细胞、破骨细胞和骨髓巨噬细胞进行的 RNA-seq 分析以及靶标验证试验发现,破骨细胞融合调节因子 Pin1 和主成骨调节因子 Runx2 分别是 miR-324-5p 在破骨细胞系细胞和成骨细胞中的靶标。事实上,体外过表达 Runx2 重现了体内因 miR-324 缺失而观察到的成骨增加和脂肪生成减少的表型。总之,这些数据证明了 miR-324 通过调节骨形成和骨重塑的各个方面在骨稳态中的重要性。阐明受 miR-324 调控的途径为治疗骨质疏松症等骨病提供了希望。
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microRNA-324 mediates bone homeostasis and the regulation of osteoblast and osteoclast differentiation and activity
MicroRNAs (miRNAs) modulate the expression of other RNA molecules. One miRNA can target many transcripts, allowing each miRNA to play key roles in many biological pathways. Defects in bone homeostasis result in common age-related diseases including osteoporosis. Serum levels of miR-324-3p positively correlate with several features of bone maintenance. In contrast here, using in vivo micro-computed tomography and histology, global miR-324-null mice demonstrated increased bone mineral density and both trabecular and cortical thickness, with effect magnitudes increasing with age. The bone marrow of miR-324-null mice had reduced lipid content while TRAP staining revealed a decrease in osteoclasts, with histomorphometry demonstrating an increased rate of bone formation. Ex vivo assays showed that the high bone mass phenotype of miR-324-null mice resulted from both increased osteoblast activity and decreased osteoclastogenesis. RNA-seq analysis of osteoblasts, osteoclasts and bone marrow macrophages and target validation assays identified that the osteoclast fusion regulator Pin1 and the master osteogenic regulator Runx2 were targets of miR-324-5p in osteoclast lineage cells and osteoblasts, respectively. Indeed, in vitro Runx2 overexpression recapitulated the increased osteogenesis and decreased adipogenesis phenotype observed in vivo by the loss of miR-324. Overall, these data demonstrate the importance of miR-324 in bone homeostasis by regulating aspects of both bone formation and remodelling. Elucidation of pathways regulated by miR-324 offer promise for the treatment of bone diseases such as osteoporosis.
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来源期刊
Bone
Bone 医学-内分泌学与代谢
CiteScore
8.90
自引率
4.90%
发文量
264
审稿时长
30 days
期刊介绍: BONE is an interdisciplinary forum for the rapid publication of original articles and reviews on basic, translational, and clinical aspects of bone and mineral metabolism. The Journal also encourages submissions related to interactions of bone with other organ systems, including cartilage, endocrine, muscle, fat, neural, vascular, gastrointestinal, hematopoietic, and immune systems. Particular attention is placed on the application of experimental studies to clinical practice.
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