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雄激素受体调节周期性机械拉伸及其上下游信号下的成肌细胞分化。

Androgen receptor regulates the differentiation of myoblasts under cyclic mechanical stretch and its upstream and downstream signals.

机构信息

School of Exercise and Health, Key Laboratory of Exercise and Health Sciences of Ministry of Education, Shanghai University of Sport, Shanghai, China; Department of Kinesiology, College of Physical Education, Shanghai Normal University, Shanghai, China.

School of Exercise and Health, Key Laboratory of Exercise and Health Sciences of Ministry of Education, Shanghai University of Sport, Shanghai, China.

出版信息

Int J Biol Macromol. 2024 Nov;281(Pt 1):136257. doi: 10.1016/j.ijbiomac.2024.136257. Epub 2024 Oct 2.

Abstract

Our previous studies have demonstrated the important roles of androgen receptor (AR) in myoblast proliferation regulated by 15 % (mimic appropriate exercise) and 20 % (mimic excessive exercise) mechanical stretches. Except for myoblast proliferation, differentiation is also an important factor affecting muscle mass and strength. But the role of AR in stretch-regulated myoblast differentiation and AR's upstream and downstream signals remain unknown. In the present study, firstly the differences of myogenic differentiation between C2C12 (with AR expression) and L6 (without AR expression) myoblasts induced by 15 % and 20 % mechanical stretches were compared; secondly, AR antagonist flutamide and AR agonist GTx-007 were used in 15 % and 20 % stretched myoblasts respectively to confirm AR's roles in stretch-regulated myoblast differentiation; thirdly, RNA-seq, molecular dynamic simulation (MD) and co-immunoprecipitation were performed to screen the downstream and upstream molecules of AR during stretches. We found that (1) 15 % stretch increased while 20 % stretch decreased myotube number in differentiating C2C12 and L6 myoblasts, with more significant changes in C2C12 cells than L6 cells; (2) in stretched C2C12 myoblasts, AR antagonist flutamide inhibited 15 % stretch-promoted differentiation while AR agonist GTx-007 reversed 20 % stretch-inhibited differentiation (reflected by changes in myotube number, MHC contents of fast-twitch and slow-twitch fiber, and the levels of myogenic regulatory factors (MRFs) such as MyoD and myogenin); (3) KEGG analysis of RNA-seq showed that the differently expressed genes (DEGs) in C2C12 cells induced by 15 % stretch were enriched in FoxO and JAK-STAT signaling pathways, while DEGs by 20 % stretch were enriched in FoxO and MAPK signaling pathways; (4) MD and co-immunoprecipitation showed that β1 integrin could interact with AR and influence AR's activity in C2C12 cells. In conclusion, AR plays important roles in myoblast differentiation promoted by 15 % stretch while inhibited by 20 % stretch, which was fulfilled through FoxO-MRFs. In addition, α7β1 integrin may be a bridge linking mechanical stretch and AR. This study is beneficial to deeply understand the roles and mechanisms of AR in stretch-regulated muscle mass and strength; and reports firstly that myoblasts sense mechanical stimulus and transmit into intracellular AR via α7β1 integrin.

摘要

我们之前的研究表明,雄激素受体(AR)在 15%(模拟适当运动)和 20%(模拟过度运动)机械拉伸调节的成肌细胞增殖中起重要作用。除了成肌细胞增殖,分化也是影响肌肉质量和力量的一个重要因素。但是,AR 在拉伸调节的成肌细胞分化中的作用以及 AR 的上游和下游信号仍然未知。在本研究中,首先比较了具有 AR 表达的 C2C12 和没有 AR 表达的 L6 成肌细胞在 15%和 20%机械拉伸下的成肌分化差异;其次,分别在 15%和 20%拉伸的成肌细胞中使用 AR 拮抗剂氟他胺和 AR 激动剂 GTx-007 来确认 AR 在拉伸调节的成肌细胞分化中的作用;第三,进行 RNA-seq、分子动力学模拟(MD)和共免疫沉淀,以筛选拉伸过程中 AR 的下游和上游分子。我们发现:(1)15%拉伸增加而 20%拉伸减少分化中的 C2C12 和 L6 成肌细胞的肌管数量,C2C12 细胞的变化比 L6 细胞更明显;(2)在拉伸的 C2C12 成肌细胞中,AR 拮抗剂氟他胺抑制 15%拉伸促进的分化,而 AR 激动剂 GTx-007 逆转 20%拉伸抑制的分化(通过肌管数量、快肌和慢肌纤维的 MHC 含量以及肌源性调节因子(MRFs)如 MyoD 和肌生成素的水平的变化来反映);(3)RNA-seq 的 KEGG 分析表明,15%拉伸诱导的 C2C12 细胞中的差异表达基因(DEGs)富集在 FoxO 和 JAK-STAT 信号通路中,而 20%拉伸诱导的 DEGs 则富集在 FoxO 和 MAPK 信号通路中;(4)MD 和共免疫沉淀表明,β1 整合素可以与 AR 相互作用并影响 C2C12 细胞中 AR 的活性。总之,AR 在 15%拉伸促进而 20%拉伸抑制的成肌细胞分化中起重要作用,这是通过 FoxO-MRFs 实现的。此外,α7β1 整合素可能是机械刺激传递到细胞内 AR 的桥梁。本研究有助于深入了解 AR 在拉伸调节的肌肉质量和力量中的作用和机制;并首次报道成肌细胞通过α7β1 整合素感知机械刺激并将其传递到细胞内的 AR。

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