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西格玛-1受体增强表皮生长因子信号传导促进PC12细胞神经突生成:与脂筏重构的潜在关系。

Sigma-1 receptors potentiate epidermal growth factor signaling towards neuritogenesis in PC12 cells: potential relation to lipid raft reconstitution.

作者信息

Takebayashi Minoru, Hayashi Teruo, Su Tsung-Ping

机构信息

Cellular Pathobiology Unit, Development and Plasticity Section, Cellular Neurobiology Research Branch, Intramural Research Program, National Institute on Drug Abuse, National Institutes of Health/DHHS, Baltimore, Maryland, USA.

出版信息

Synapse. 2004 Aug;53(2):90-103. doi: 10.1002/syn.20041.

Abstract

We previously demonstrated that overexpression of sigma-1 receptors (sigma-1R) potentiated neurite sprouting caused by nerve growth factor in PC12 cells (Takebayashi et al. 2002 J Pharmacol Exp Ther 202:1227-1237). In this study we examined if sigma-1R may be involved in the action of epidermal growth factor (EGF). EGF is conventionally recognized as a mitogenic factor that stimulates only the proliferation of various types of cells, including PC12 cells. We found here that in sigma-1 receptor-overexpressing PC12 cells (sigma-1R OE cells), EGF markedly stimulates neuritogenesis without affecting cellular proliferation. EGF receptors (EGFR) are largely reduced in lipid rafts and are enriched in non-raft regions in sigma-1R OE cells. The enrichment of EGFR in the non-raft region is correlated with enhanced downstream signaling of EGFR including the phosphorylation of both EGFR and extracellular signal-regulated kinases (ERKs). Destruction of cholesterol-containing rafts by treating cells with methyl-beta-cyclodextrin also causes a reduction of EGFR in lipid rafts, a concomitant increase in the phosphorylation of both EGFR and ERK, and an increase in the EGF-induced neurite sprouting in wildtype cells. Furthermore, while overexpression of sigma-1R increases the level of lipid raft-associated cholesterol, the overexpression alters the levels of gangliosides in lipid rafts: GM1 and GM2 are decreased, whereas GD1a is increased. We conclude that sigma-1R cause the remodeling of lipid rafts, at least by increasing the level of lipid raft-associated cholesterol and by altering the levels of certain critical lipid raft-forming gangliosides. sigma-1R may thus play an important role in directing EGF signaling towards neuritogenesis, perhaps by shifting EGFR from the lipid raft into non-raft regions.

摘要

我们先前证明,σ-1受体(sigma-1R)的过表达增强了神经生长因子在PC12细胞中引起的神经突萌发(Takebayashi等人,2002年,《药理学与实验治疗学杂志》202:1227 - 1237)。在本研究中,我们检测了sigma-1R是否可能参与表皮生长因子(EGF)的作用。EGF传统上被认为是一种有丝分裂原因子,仅刺激包括PC12细胞在内的各种类型细胞的增殖。我们在此发现,在过表达sigma-1受体的PC12细胞(sigma-1R OE细胞)中,EGF显著刺激神经突生成,而不影响细胞增殖。在sigma-1R OE细胞中,表皮生长因子受体(EGFR)在脂筏中大量减少,并在非脂筏区域富集。EGFR在非脂筏区域的富集与EGFR下游信号增强相关,包括EGFR和细胞外信号调节激酶(ERK)的磷酸化。用甲基-β-环糊精处理细胞破坏含胆固醇的脂筏,也会导致脂筏中EGFR减少,EGFR和ERK磷酸化同时增加,以及野生型细胞中EGF诱导的神经突萌发增加。此外,虽然sigma-1R的过表达增加了脂筏相关胆固醇的水平,但这种过表达改变了脂筏中神经节苷脂的水平:GM1和GM2减少,而GD1a增加。我们得出结论,sigma-1R至少通过增加脂筏相关胆固醇水平和改变某些关键脂筏形成神经节苷脂的水平来引起脂筏重塑。因此,sigma-1R可能在引导EGF信号向神经突生成方面发挥重要作用,也许是通过将EGFR从脂筏转移到非脂筏区域。

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