Glial Growth Factor/Neuregulin Inhibits Schwann Cell Myelination and Induces Demyelination

神经调节蛋白 神经调节蛋白1 雪旺细胞 生物 细胞生物学 ERBB3型 神经胶质 神经科学 癌症研究 信号转导 中枢神经系统 受体酪氨酸激酶
作者
George Zanazzi,Steven Einheber,Richard Westreich,Melanie‐Jane Hannocks,Debra Bedell-Hogan,Mark A. Marchionni,James L. Salzer
出处
期刊:Journal of Cell Biology [The Rockefeller University Press]
卷期号:152 (6): 1289-1300 被引量:147
标识
DOI:10.1083/jcb.152.6.1289
摘要

During development, neuregulin-1 promotes Schwann cell proliferation and survival; its role in later events of Schwann cell differentiation, including myelination, is poorly understood. Accordingly, we have examined the effects of neuregulin-1 on myelination in neuron-Schwann cell cocultures. Glial growth factor (GGF), a neuregulin-1 isoform, significantly inhibited myelination by preventing axonal segregation and ensheathment. Basal lamina formation was not affected. Treatment of established myelinated cultures with GGF resulted in striking demyelination that frequently began at the paranodes and progressed to the internode. Demyelination was dose dependent and accompanied by dedifferentiation of Schwann cells to a promyelinating stage, as evidenced by reexpression of the transcription factor suppressed cAMP-inducible POU; a significant proportion of cells with extensive demyelination also proliferated. Two other Schwann cell mitogens, fibroblast growth factor-2 and transforming growth factor-β, inhibited myelination but did not cause demyelination, suggesting this effect is specific to the neuregulins. The neuregulin receptor proteins, erbB2 and erbB3, are expressed on ensheathing and myelinating Schwann cells and rapidly phosphorylated with GGF treatment. GGF treatment of myelinating cultures also induced phosphorylation of phosphatidylinositol 3-kinase, mitogen-activated protein kinase, and a 120-kD protein. These results suggest that neuronal mitogens, including the neuregulins, may inhibit myelination during development and that activation of mitogen signaling pathways may contribute to the initial demyelination and subsequent Schwann cell proliferation observed in various pathologic conditions.
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