Narayanan S Priyadarshini, Flores Ana I, Wang Feng, Macklin Wendy B
Department of Neurosciences, Lerner Research Institute, Cleveland Clinic, Cleveland, Ohio 44195, USA.
J Neurosci. 2009 May 27;29(21):6860-70. doi: 10.1523/JNEUROSCI.0232-09.2009.
Mammalian target of rapamycin (mTOR), a well known Akt substrate, regulates multiple cellular functions including cell growth and protein synthesis. The current study identifies a novel role of the Akt/mTOR pathway as a regulator of CNS myelination. Previously, we showed that overexpressing constitutively active Akt in oligodendrocytes in a transgenic mouse model induces enhanced CNS myelination, with no changes in the proliferation or survival of oligodendrocyte progenitor or mature cells. The present study focused on the signaling mechanisms regulating this hypermyelination induced by Akt. Activation of mTOR and its downstream substrates (p70S6 kinase and S6 ribosomal protein) was observed in Akt-overexpressing oligodendrocytes. When mTOR signaling was inhibited chronically in vivo with rapamycin starting at 6 weeks of age, the observed hypermyelination was reduced to approximately the amount of myelin seen in wild-type mice. mTOR inhibition had little impact on wild-type myelination between 6 and 12 weeks of age, suggesting that, in normal adults, myelination is relatively complete and is no longer regulated by mTOR signaling. However, when mTOR was chronically inhibited in young adult wild-type mice, myelination was reduced. These results suggest that, during active myelination, the major Akt signal regulating CNS myelination is the mTOR pathway.
雷帕霉素哺乳动物靶点(mTOR)是一种著名的Akt底物,可调节多种细胞功能,包括细胞生长和蛋白质合成。当前研究确定了Akt/mTOR信号通路作为中枢神经系统髓鞘形成调节因子的新作用。此前,我们在转基因小鼠模型中发现,在少突胶质细胞中过表达组成型活性Akt可增强中枢神经系统的髓鞘形成,而少突胶质前体细胞或成熟细胞的增殖或存活没有变化。本研究聚焦于调节由Akt诱导的这种髓鞘过度形成的信号传导机制。在过表达Akt的少突胶质细胞中观察到了mTOR及其下游底物(p70S6激酶和S6核糖体蛋白)的激活。当从6周龄开始用雷帕霉素在体内长期抑制mTOR信号传导时,观察到的髓鞘过度形成减少到了野生型小鼠中所见的髓鞘量。mTOR抑制对6至12周龄野生型小鼠的髓鞘形成几乎没有影响,这表明在正常成年动物中,髓鞘形成相对完整,不再受mTOR信号传导调节。然而,当在年轻成年野生型小鼠中对mTOR进行长期抑制时,髓鞘形成减少。这些结果表明,在活跃的髓鞘形成过程中,调节中枢神经系统髓鞘形成的主要Akt信号是mTOR信号通路。