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小鼠维生素D受体基因的缺失导致骨骼肌发育异常,伴有肌调节转录因子表达失调。

Deletion of vitamin D receptor gene in mice results in abnormal skeletal muscle development with deregulated expression of myoregulatory transcription factors.

作者信息

Endo Itsuro, Inoue Daisuke, Mitsui Takao, Umaki Yoshifumi, Akaike Masashi, Yoshizawa Tatsuya, Kato Shigeaki, Matsumoto Toshio

机构信息

Department of Medicine and Bioregulatory Sciences, University of Tokushima Graduate School of Medicine, 3-18-15 Kuramoto-Cho, Tokushima 770-8503, Japan.

出版信息

Endocrinology. 2003 Dec;144(12):5138-44. doi: 10.1210/en.2003-0502. Epub 2003 Aug 13.

Abstract

Although rachitic/osteomalacic myopathy caused by impaired vitamin D actions has long been described, the molecular pathogenesis remains elusive. To determine physiological roles of vitamin D actions through vitamin D receptor (VDR) in skeletal muscle development, we examined skeletal muscle in VDR gene deleted (VDR -/-) mice, an animal model of vitamin D-dependent rickets type II, for morphological changes and expression of myoregulatory transcription factors and myosin heavy chain isoforms. We found that each muscle fiber was small and variable in size in hindlimb skeletal muscle from VDR -/- mice, although overall myocyte differentiation occurred normally. These abnormalities were independent of secondary metabolic changes such as hypocalcemia and hypophosphatemia, and were accompanied by aberrantly high and persistent expression of myf5, myogenin, E2A, and early myosin heavy chain isoforms, which are normally down-regulated at earlier stages. Moreover, treatment of VDR-positive myoblastic cells with 1,25(OH)2D3 in vitro caused down-regulation of these factors. These results suggest that VDR plays a physiological role in skeletal muscle development, participating in temporally strict down-regulation of myoregulatory transcription factors. The present study can form a molecular basis of VDR actions on muscle and should help further establish the physiological roles of VDR in muscle development as well as pharmacological effects of vitamin D on muscle functions.

摘要

尽管由维生素D作用受损引起的佝偻病/骨软化症性肌病早已被描述,但分子发病机制仍不清楚。为了确定维生素D通过维生素D受体(VDR)在骨骼肌发育中的生理作用,我们检查了II型维生素D依赖性佝偻病的动物模型——VDR基因缺失(VDR -/-)小鼠的骨骼肌,以观察其形态变化以及肌调节转录因子和肌球蛋白重链亚型的表达。我们发现,VDR -/-小鼠后肢骨骼肌中的每根肌纤维都很小且大小不一,尽管总体上肌细胞分化正常发生。这些异常与低钙血症和低磷血症等继发性代谢变化无关,并且伴随着myf5、肌细胞生成素、E2A和早期肌球蛋白重链亚型的异常高表达和持续表达,这些因子在早期阶段通常会下调。此外,在体外用1,25(OH)2D3处理VDR阳性成肌细胞会导致这些因子的下调。这些结果表明,VDR在骨骼肌发育中发挥生理作用,参与肌调节转录因子在时间上严格的下调过程。本研究可为VDR对肌肉的作用奠定分子基础,并应有助于进一步确定VDR在肌肉发育中的生理作用以及维生素D对肌肉功能的药理作用。

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