Kawao Naoyuki, Morita Hironobu, Obata Koji, Tatsumi Kohei, Kaji Hiroshi
Department of Physiology and Regenerative Medicine, Kindai University Faculty of Medicine, Osakasayama, Japan.
Department of Physiology, Gifu University Graduate School of Medicine, Gifu, Japan.
J Cell Physiol. 2018 Feb;233(2):1191-1201. doi: 10.1002/jcp.25986. Epub 2017 Jun 22.
Interactions between muscle and bone have been recently noted. We reported that the vestibular system plays crucial roles in the changes in muscle and bone induced by hypergravity in mice. However, the details of the mechanisms by which gravity change affects muscle and bone through the vestibular system still remain unknown. Here, we investigated the roles of humoral factors linking muscle to bone and myostatin-related factors in the hypergravity-induced changes in muscle and bone in mice with vestibular lesions (VL). Hypergravity elevated serum and mRNA levels of follistatin, an endogenous inhibitor of myostatin, in the soleus muscle of mice. VL blunted the hypergravity-enhanced levels of follistatin in the soleus muscle of mice. Simulated microgravity decreased follistatin mRNA level in mouse myoblastic C2C12 cells. Follistatin elevated the mRNA levels of myogenic genes as well as the phosphorylation of Akt and p70S6 kinase in C2C12 cells. As for bone metabolism, follistatin antagonized the mRNA levels of osteogenic genes suppressed by activin A during the differentiation of mesenchymal cells into osteoblastic cells. Moreover, follistatin attenuated osteoclast formation enhanced by myostatin in the presence of receptor activator of nuclear factor-κB ligand in RAW 264.7 cells. Serum follistatin levels were positively related to bone mass in mouse tibia. In conclusion, the present study provides novel evidence that hypergravity affects follistatin levels in muscle through the vestibular system in mice. Follistatin may play some roles in the interactions between muscle and bone metabolism in response to gravity change.
最近人们注意到肌肉与骨骼之间存在相互作用。我们报道过前庭系统在小鼠超重力诱导的肌肉和骨骼变化中起关键作用。然而,重力变化通过前庭系统影响肌肉和骨骼的具体机制仍不清楚。在此,我们研究了在有前庭损伤(VL)的小鼠中,连接肌肉与骨骼的体液因子以及与肌生成抑制素相关的因子在超重力诱导的肌肉和骨骼变化中的作用。超重力使小鼠比目鱼肌中肌生成抑制素的内源性抑制剂卵泡抑素的血清和mRNA水平升高。VL减弱了超重力增强的小鼠比目鱼肌中卵泡抑素的水平。模拟微重力降低了小鼠成肌C2C12细胞中卵泡抑素mRNA水平。卵泡抑素提高了C2C12细胞中肌源性基因的mRNA水平以及Akt和p70S6激酶的磷酸化水平。至于骨代谢,在间充质细胞向成骨细胞分化过程中,卵泡抑素拮抗了激活素A抑制的成骨基因mRNA水平。此外,在RAW 264.7细胞中,卵泡抑素减弱了在核因子κB受体激活剂配体存在时肌生成抑制素增强的破骨细胞形成。小鼠胫骨中的血清卵泡抑素水平与骨量呈正相关。总之本研究提供了新的证据,即超重力通过小鼠的前庭系统影响肌肉中卵泡抑素的水平。卵泡抑素可能在应对重力变化时的肌肉与骨代谢相互作用中发挥某些作用。