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首页> 外文期刊>Journal of cell biology >Expression of recombinant myelin-associated glycoprotein in primary Schwann cells promotes the initial investment of axons by myelinating Schwann cells.
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Expression of recombinant myelin-associated glycoprotein in primary Schwann cells promotes the initial investment of axons by myelinating Schwann cells.

机译:重组髓鞘相关糖蛋白在原发施万细胞中的表达促进了髓鞘对施万细胞的轴突的初始投资。

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摘要

Myelin-associated glycoprotein (MAG) is an integral membrane protein expressed by myelinating glial cells that occurs in two developmentally regulated forms with different carboxyterminal cytoplasmic domains (L-MAG and S-MAG). To investigate the role of MAG in myelination a recombinant retrovirus was used to introduce a MAG cDNA (L-MAG form) into primary Schwann cells in vitro. Stably infected populations of cells were obtained that constitutively expressed MAG at the cell surface without the normal requirement for neuronal contact to induce expression. Constitutive expression of L-MAG did not affect myelination. In long term co-culture with purified sensory neurons, the higher level of MAG expression on infected Schwann cells was reduced to control levels on cells that formed myelin. On the other hand, unlike normal Schwann cells, infected Schwann cells associated with nonmyelinated axons or undergoing Wallerian degeneration expressed high levels of MAG. This suggests that a posttranscriptional mechanism modulates MAG expression during myelination. Immunostaining myelinating cultures with an antibody specific to L-MAG showed that L-MAG was normally transiently expressed at the earliest stages of myelination. In short term co-culture with sensory neurons, infected Schwann cells expressing only L-MAG segregated and ensheathed larger axons after 4 d in culture provided that an exogenous basal lamina was supplied. Similar activity was rarely displayed by control Schwann cells correlating with the low level of MAG induction after 4 d. These data strongly suggest that L-MAG promotes the initial investment by Schwann cells of axons destined to be myelinated.
机译:髓磷脂相关糖蛋白(MAG)是由髓鞘神经胶质细胞表达的完整膜蛋白,以两种发育调控的形式出现,具有不同的羧基末端胞质结构域(L-MAG和S-MAG)。为了研究MAG在髓鞘形成中的作用,使用了重组逆转录病毒将MAG cDNA(L-MAG形式)引入体外的Schwann细胞中。获得了稳定感染的细胞群,其在细胞表面组成性表达MAG,而无需正常的神经元接触来诱导表达。 L-MAG的组成型表达不影响髓鞘形成。在与纯化的感觉神经元长期共培养中,感染的雪旺细胞上较高水平的MAG表达被降低至形成髓磷脂的细胞上的对照水平。另一方面,与正常的雪旺氏细胞不同,感染的雪旺氏细胞与无髓鞘的轴突或经历沃勒变性的细胞表达高水平的MAG。这表明转录后机制在髓鞘形成过程中调节MAG表达。用对L-MAG特异的抗体对髓鞘培养物进行免疫染色,结果表明L-MAG通常在髓鞘形成的最早阶段瞬时表达。在短期与感官神经元的共培养中,只要提供了外源性基底层,培养4 d后仅表达L-MAG的受感染雪旺细胞就会分离并包裹较大的轴突。对照雪旺氏细胞很少显示出与4d后MAG诱导水平低相关的类似活性。这些数据强烈表明,L-MAG促进了Schwann细胞注定要被髓鞘化的轴突的初始投资。

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