University of Rochester Medical Center, Rochester, United States.
The Forsyth Institute, Cambridge, United States.
Elife. 2023 Feb 8;12:e79768. doi: 10.7554/eLife.79768.
The ability to simultaneously modulate a set of genes for lineage-specific development has made miRNA an ideal master regulator for organogenesis. However, most miRNA deletions do not exhibit obvious phenotypic defects possibly due to functional redundancy. miRNAs are known to regulate skeletal lineages as the loss of their maturation enzyme Dicer impairs bone remodeling processes. Therefore, it is important to identify specific miRNA essential for bone homeostasis. We report the loss of MIR27a causing severe osteoporosis in mice. MIR27a affects osteoclast-mediated bone resorption but not osteoblast-mediated bone formation during skeletal remodeling. Gene profiling and bioinformatics further identify the specific targets of MIR27a in osteoclast cells. MIR27a exerts its effects on osteoclast differentiation through modulation of Squstm1/p62 whose mutations have been linked to Paget's disease of bone. Our findings reveal a new MIR27a-p62 axis necessary and sufficient to mediate osteoclast differentiation and highlight a therapeutic implication for osteoporosis.
miRNA 能够同时调节一组特定谱系发育的基因,使其成为器官发生的理想主调控因子。然而,大多数 miRNA 的缺失并不表现出明显的表型缺陷,可能是由于功能冗余。miRNA 被认为可以调节骨骼谱系,因为其成熟酶 Dicer 的缺失会损害骨重塑过程。因此,确定对骨稳态至关重要的特定 miRNA 非常重要。我们报告了 MIR27a 的缺失导致小鼠严重的骨质疏松症。MIR27a 影响破骨细胞介导的骨吸收,但不影响骨骼重塑过程中的成骨细胞介导的骨形成。基因谱分析和生物信息学进一步确定了 MIR27a 在破骨细胞中的特定靶标。MIR27a 通过调节与 Pagets 病相关的 Squstm1/p62 对破骨细胞分化发挥作用。我们的研究结果揭示了新的 MIR27a-p62 轴,对于介导破骨细胞分化是必要和充分的,并强调了骨质疏松症的治疗意义。