Musculoskeletal Research Group, Institute of Cellular Medicine, Newcastle University, Framlington Place, Newcastle upon Tyne NE2 4HH, UK.
Blood Sciences, South Tees Hospitals NHS Foundation Trust, Middlesbrough TS4 3BW, UK.
Int J Mol Sci. 2022 Mar 9;23(6):2957. doi: 10.3390/ijms23062957.
Mechanical loading exerts a profound influence on bone density and architecture, but the exact mechanism is unknown. Our study shows that expression of the neurological transcriptional factor zinc finger of the cerebellum 1 () is markedly increased in trabecular bone biopsies in the lumbar spine compared with the iliac crest, skeletal sites of high and low mechanical stress, respectively. Human trabecular bone transcriptome analyses revealed a strong association between mRNA levels and gene transcripts characteristically associated with osteoblasts, osteocytes and osteoclasts. This supposition is supported by higher expression in iliac bone biopsies from postmenopausal women with osteoporosis compared with age-matched control subjects, as well as strongly significant inverse correlation between mRNA levels and BMI-adjusted bone mineral density (BMD) (Z-score). promoter methylation was decreased in mechanically loaded vertebral bone compared to unloaded normal iliac bone, and its mRNA levels correlated inversely with promoter methylation, thus linking mechanical stress to epigenetic control of gene expression. The findings were corroborated in cultures of rat osteoblast progenitors and osteoblast-like cells. This study demonstrates for the first time how skeletal epigenetic changes that are affected by mechanical forces give rise to marked alteration in bone cell transcriptional activity and translate to human bone pathophysiology.
机械负荷对骨密度和结构有深远的影响,但确切的机制尚不清楚。我们的研究表明,在腰椎的小梁骨活检中,小脑 1()的神经转录因子锌指的表达明显增加,与髂嵴相比,分别是高机械应力和低机械应力的骨骼部位。人类小梁骨转录组分析显示,mRNA 水平与通常与成骨细胞、骨细胞和破骨细胞相关的基因转录物之间存在强烈关联。这一假设得到了支持,即绝经后骨质疏松症女性的髂骨活检中的表达高于年龄匹配的对照组,并且 mRNA 水平与 BMI 调整后的骨密度(Z 评分)呈强烈的负相关。与未受载的正常髂骨相比,机械加载的椎体骨中的 启动子甲基化减少,其 mRNA 水平与 启动子甲基化呈负相关,从而将机械应激与基因表达的表观遗传控制联系起来。这些发现在大鼠成骨细胞祖细胞和成骨样细胞的培养中得到了证实。本研究首次证明了受机械力影响的骨骼表观遗传变化如何导致骨细胞转录活性的显著改变,并转化为人类骨病理生理学。