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髓鞘碱性蛋白介导调节少突胶质细胞膜片中微管稳定性的细胞外信号。

Myelin basic protein mediates extracellular signals that regulate microtubule stability in oligodendrocyte membrane sheets.

作者信息

Dyer C A, Philibotte T M, Wolf M K, Billings-Gagliardi S

机构信息

Department of Biomedical Sciences, E.K. Shriver Center, Waltham, MA 02254.

出版信息

J Neurosci Res. 1994 Sep 1;39(1):97-107. doi: 10.1002/jnr.490390112.

DOI:10.1002/jnr.490390112
PMID:7528819
Abstract

Treatment of cultured oligodendrocytes with a monoclonal antibody to galactocerebroside (GalC) triggers a cascade of events including the redistribution of membrane surface GalC over internal domains of MBP and loss of microtubular structures within the sheets (Dyer and Benjamins: J Neurosci 8:4307-4318, 1988; Dyer and Benjamins: J Neurosci Res 24:212-221, 1989). In this report, wild type and myelin basic protein (MBP)-deficient shiverer oligodendrocytes were used to study the possible relationships between these events, and specifically to determine if MBP mediates signals which destabilize microtubular assemblies in cultured oligodendrocytes. We now show that MBP and GalC, which are both initially Triton X-100 soluble, become Triton X-100 insoluble following anti-GalC binding and anti-GalC:GalC complex redistribution, suggesting that the surface anti-GalC: GalC complexes become associated with cytoplasmic MBP. Mediation of the signaling event by MBP is further demonstrated by 1) a decreased phosphorylation of MBP in wild type oligodendrocytes after antibody binding, and 2) the absence of responses, such as GalC redistribution and microtubule loss, in MBP-deficient shiverer oligodendrocytes treated with anti-GalC. Continuous activation of the GalC/MBP pathway for 7 days in wild type oligodendrocytes results in enlarged cell bodies and production of numerous microprocesses, a morphology that is similar to MBP-deficient shiverer oligodendrocytes. A second signaling pathway which produces an opposite effect, i.e., the stabilization and apparent up-regulation of microtubular structures in cultured oligodendrocyte membrane sheets, remains functional in shiverer oligodendrocytes. Thus, MBP appears to be important for mediating extracellular signals that cause a loss of microtubular structures in oligodendrocyte membrane sheets and abnormal morphology.

摘要

用抗半乳糖脑苷脂(GalC)单克隆抗体处理培养的少突胶质细胞会引发一系列事件,包括膜表面GalC重新分布到髓鞘碱性蛋白(MBP)的内部结构域以及片层内微管结构的丧失(戴尔和本杰明斯:《神经科学杂志》8:4307 - 4318,1988;戴尔和本杰明斯:《神经科学研究杂志》24:212 - 221,1989)。在本报告中,野生型和髓鞘碱性蛋白(MBP)缺陷的颤抖小鼠少突胶质细胞被用于研究这些事件之间的可能关系,特别是确定MBP是否介导使培养的少突胶质细胞中微管组装不稳定的信号。我们现在表明,最初都可溶于Triton X - 100的MBP和GalC,在抗GalC结合和抗GalC:GalC复合物重新分布后变为不溶于Triton X - 100,这表明表面抗GalC:GalC复合物与细胞质MBP相关联。MBP对信号事件的介导作用进一步通过以下方式得到证明:1)抗体结合后野生型少突胶质细胞中MBP的磷酸化减少,以及2)用抗GalC处理的MBP缺陷的颤抖小鼠少突胶质细胞中没有出现诸如GalC重新分布和微管丧失等反应。在野生型少突胶质细胞中持续激活GalC/MBP途径7天会导致细胞体增大并产生许多微突起,这种形态类似于MBP缺陷的颤抖小鼠少突胶质细胞。另一条产生相反作用的信号通路,即在培养的少突胶质细胞膜片层中使微管结构稳定并明显上调,在颤抖小鼠少突胶质细胞中仍然起作用。因此,MBP似乎对于介导导致少突胶质细胞膜片层中微管结构丧失和异常形态的细胞外信号很重要。

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