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轴突信号调节施万细胞中胶质细胞成熟因子-β的表达:对损伤坐骨神经和培养的施万细胞的免疫组织化学研究

Axonal signals regulate expression of glia maturation factor-beta in Schwann cells: an immunohistochemical study of injured sciatic nerves and cultured Schwann cells.

作者信息

Bosch E P, Zhong W, Lim R

机构信息

Department of Neurology, University of Iowa College of Medicine, Iowa City.

出版信息

J Neurosci. 1989 Oct;9(10):3690-8. doi: 10.1523/JNEUROSCI.09-10-03690.1989.

Abstract

Glia maturation factor-beta (GMF-beta) is a 17 kDa protein purified and sequenced from bovine brains. Using the monoclonal antibody G2-09 directed against GMF-beta, we previously demonstrated endogenous GMF-beta in astroblasts, Schwann cells, and their tumors in culture. In the present study, we have used indirect immunofluorescence microscopy with G2-09 to examine the effects of transection, crush, and regeneration of sciatic nerve on the expression of GMF-beta in Schwann cells in situ and to study the time course of GMF-beta induction in Schwann cells in vitro. For comparison, a parallel study was carried out with monoclonal antibodies directed against nerve growth factor (NGF) receptor. We found that (1) neither GMF-beta nor NGF receptor was detectable in intact sciatic nerves, (2) all Schwann cells of the distal segment of the transected nerve expressed GMF-beta as early as 3 d after axotomy that persisted up to 3 weeks, (3) axonal regeneration repressed the Schwann cell expression of GMF-beta, (4) isolated Schwann cells derived from rat sciatic and adult human sural nerves developed intracellular GMF-beta in culture following an initial lag period, and (5) the induction of Schwann cell NGF receptor coincided temporally with that of GMF-beta in the transected nerve and in culture. These results show that the expression of GMF-beta in Schwann cells, as is the case with the NGF receptor, is induced by the loss of the normal axon-Schwann cell contact. We propose that the induction of GMF-beta, as well as NGF receptor, in Schwann cells after nerve injury plays a role in axonal regeneration.

摘要

胶质细胞成熟因子-β(GMF-β)是一种从牛脑中纯化并测序的17 kDa蛋白质。我们先前使用针对GMF-β的单克隆抗体G2-09,在培养的成纤维细胞、雪旺细胞及其肿瘤中证实了内源性GMF-β的存在。在本研究中,我们使用G2-09进行间接免疫荧光显微镜检查,以研究坐骨神经横断、挤压和再生对雪旺细胞中GMF-β表达的影响,并研究体外培养的雪旺细胞中GMF-β诱导的时间进程。为作比较,我们用针对神经生长因子(NGF)受体的单克隆抗体进行了一项平行研究。我们发现:(1)在完整的坐骨神经中检测不到GMF-β和NGF受体;(2)横断神经远端段的所有雪旺细胞在轴突切断后3天就开始表达GMF-β,这种表达一直持续到3周;(3)轴突再生抑制了雪旺细胞中GMF-β的表达;(4)从大鼠坐骨神经和成人腓肠神经分离出的雪旺细胞在培养初期有一个延迟期后,细胞内会产生GMF-β;(5)在横断神经和培养过程中,雪旺细胞NGF受体的诱导与GMF-β的诱导在时间上是一致的。这些结果表明,雪旺细胞中GMF-β的表达与NGF受体一样,是由正常轴突-雪旺细胞接触的丧失所诱导的。我们认为,神经损伤后雪旺细胞中GMF-β以及NGF受体的诱导在轴突再生中起作用。

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