Lee Eun Ju, Pokharel Smritee, Jan Arif Tasleem, Huh Soyeon, Galope Richelle, Lim Jeong Ho, Lee Dong-Mok, Choi Sung Wook, Nahm Sang-Soep, Kim Yong-Woon, Park So-Young, Choi Inho
Department of Medical Biotechnology, Yeungnam University, Gyeongsan 38541, Korea.
Technology Convergence R&D Group, Korea Institute of Industrial Technology, Yeongcheon 770-200, Korea.
Int J Mol Sci. 2017 Jan 8;18(1):115. doi: 10.3390/ijms18010115.
Irregularities in the cellular uptake of thyroid hormones significantly affect muscle development and regeneration. Herein, we report indispensable role of transthyretin (TTR) in maintaining cellular thyroxine level. TTR was found to enhance recruitment of muscle satellite cells to the site of injury, thereby regulating muscle regeneration. Fluorescence-activated cell sorting (FACS) and immunofluorescence analysis of TTRwt (TTR wild type) and TTRkd (TTR knock-down) cells revealed that TTR controlled cell cycle progression by affecting the expression of Cyclin A2. Deiodinase 2 (D2) mediated increases in triiodothyronine levels were found to regulate the expression of myogenic marker, myogenin (MYOG). Moreover, use of a coumarin derivative (CD) revealed a significant reduction in cellular thyroxine, thereby indicating that TTR play a role in the transport of thyroxine. Taken together, these findings suggest that TTR mediated transport of thyroxine represents a survival mechanism necessary for the myogenic program. The results of this study will be highly useful to the strategic development of novel therapeutics to combat muscular dystrophies.
甲状腺激素细胞摄取的异常会显著影响肌肉发育和再生。在此,我们报告了转甲状腺素蛋白(TTR)在维持细胞甲状腺素水平方面不可或缺的作用。研究发现,TTR可增强肌肉卫星细胞向损伤部位的募集,从而调节肌肉再生。对TTRwt(TTR野生型)和TTRkd(TTR敲低)细胞进行荧光激活细胞分选(FACS)和免疫荧光分析发现,TTR通过影响细胞周期蛋白A2的表达来控制细胞周期进程。发现脱碘酶2(D2)介导的三碘甲状腺原氨酸水平升高可调节生肌标志物肌细胞生成素(MYOG)的表达。此外,使用香豆素衍生物(CD)可显著降低细胞甲状腺素水平,从而表明TTR在甲状腺素转运中发挥作用。综上所述,这些发现表明TTR介导的甲状腺素转运是生肌程序所必需的一种存活机制。本研究结果将对对抗肌肉萎缩的新型疗法的战略开发非常有用。