LeBlanc A C, Windebank A J, Poduslo J F
Department of Neurology, Mayo Clinic, Rochester, MN 55905.
Brain Res Mol Brain Res. 1992 Jan;12(1-3):31-8. doi: 10.1016/0169-328x(92)90065-j.
The role of cAMP in the regulation of P0 gene expression was investigated in Schwann cells of normal, regenerated, and permanently transected rat sciatic nerve. Forskolin treatment of endoneurial segments of rat sciatic nerve resulted in increased cAMP and P0 mRNA levels in normal and regenerated nerves but not in permanently transected nerves, where axonal regeneration is prevented. This increase of cAMP and P0 mRNA occurred within 30 and 90 min, respectively. P0 mRNA levels in the endoneurial segment of the permanently transected nerve were not increased with dibutyryl cAMP. The Schwann cells of the permanently transected nerve, however, retained the ability to myelinate 15 embryonic day (E15) dorsal root ganglia (DRG) neuron and neurite networks cultured in vitro. P0 mRNA levels increased within 4 days in transected endoneurium segments cocultured with E15 DRG neurons and neurites and further increased in 21 day myelinating cocultures. Although cAMP was not detectable in 4 day cocultures, it increased to detectable levels in 21 day cultures, suggesting that cAMP is involved in the myelinating process. These results indicate that the presence of the axon is required for the observed increase of cAMP and P0 mRNA levels and suggest that the increase of cAMP occurs within the axon which then presumably activates a different Schwann cell second messenger pathway to induce P0 gene expression.
在正常、再生及永久横断的大鼠坐骨神经的施万细胞中,研究了环磷酸腺苷(cAMP)在P0基因表达调控中的作用。用福斯可林处理大鼠坐骨神经的神经内膜段,正常和再生神经中的cAMP和P0 mRNA水平升高,但在永久横断的神经中未升高,因为永久横断神经中轴突再生受阻。cAMP和P0 mRNA的这种升高分别在30分钟和90分钟内出现。永久横断神经的神经内膜段中的P0 mRNA水平不会因二丁酰环磷腺苷(dibutyryl cAMP)而升高。然而,永久横断神经的施万细胞保留了对体外培养的15日龄胚胎背根神经节(DRG)神经元和神经突网络进行髓鞘形成的能力。与E15 DRG神经元和神经突共培养的横断神经内膜段中,P0 mRNA水平在4天内升高,在21天的髓鞘形成共培养中进一步升高。虽然在4天的共培养中未检测到cAMP,但在21天的培养中它升高到可检测水平,这表明cAMP参与了髓鞘形成过程。这些结果表明,轴突的存在是观察到的cAMP和P0 mRNA水平升高所必需的,并表明cAMP的升高发生在轴突内,然后可能激活不同的施万细胞第二信使途径来诱导P0基因表达。