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Transactivation of the Epidermal Growth Factor Receptor by Heat Shock Protein 90 via Toll-like Receptor 4 Contributes to the Migration of Glioblastoma Cells*

机译:热休克蛋白90通过Toll样受体4对表皮生长因子受体的反式激活有助于胶质母细胞瘤细胞的迁移*

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摘要

Extracellular heat shock protein HSP90α was reported to participate in tumor cell growth, invasion, and metastasis formation through poorly understood signaling pathways. Herein, we show that extracellular HSP90α favors cell migration of glioblastoma U87 cells. More specifically, externally applied HSP90α rapidly induced endocytosis of EGFR. This response was accompanied by a transient increase in cytosolic Ca2+ appearing after 1–3 min of treatment. In the presence of EGF, U87 cells showed HSP90α-induced Ca2+ oscillations, which were reduced by the ATP/ADPase, apyrase, and inhibited by the purinergic P2 inhibitor, suramin, suggesting that ATP release is requested. Disruption of lipid rafts with methyl β-cyclodextrin impaired the Ca2+ rise induced by extracellular HSP90α combined with EGF. Specific inhibition of TLR4 expression by blocking antibodies suppressed extracellular HSP90α-induced Ca2+ signaling and the associated cell migration. HSPs are known to bind lipopolysaccharides (LPSs). Preincubating cells with Polymyxin B, a potent LPS inhibitor, partially abrogated the effects of HSP90α without affecting Ca2+ oscillations observed with EGF. Extracellular HSP90α induced EGFR phosphorylation at Tyr-1068, and this event was prevented by both the protein kinase Cδ inhibitor, rottlerin, and the c-Src inhibitor, PP2. Altogether, our results suggest that extracellular HSP90α transactivates EGFR/ErbB1 through TLR4 and a PKCδ/c-Src pathway, which induces ATP release and cytosolic Ca2+ increase and finally favors cell migration. This mechanism could account for the deleterious effects of HSPs on high grade glioma when released into the tumor cell microenvironment.
机译:据报道,细胞外热休克蛋白HSP90α通过不了解的信号通路参与肿瘤细胞的生长,侵袭和转移形成。在本文中,我们显示细胞外HSP90α有利于胶质母细胞瘤U87细胞的细胞迁移。更具体地说,外用的HSP90α迅速诱导EGFR的胞吞作用。这种反应伴随着治疗1-3分钟后细胞内Ca2 +的短暂增加。在存在EGF的情况下,U87细胞显示出HSP90α诱导的Ca2 +振荡,这被ATP / ADPase,腺苷三磷酸酶减少,而被嘌呤能P2抑制剂苏拉明抑制,表明需要释放ATP。用甲基β-环糊精破坏脂筏可削弱细胞外HSP90α结合EGF诱导的Ca2 +升高。通过阻断抗体来特异性抑制TLR4表达可抑制细胞外HSP90α诱导的Ca2 +信号传导及相关的细胞迁移。已知HSP结合脂多糖(LPS)。将细胞与有效的LPS抑制剂多粘菌素B预孵育,可以部分消除HSP90α的作用,而不会影响EGF观察到的Ca2 +振荡。细胞外HSP90α诱导Tyr-1068处的EGFR磷酸化,蛋白激酶Cδ抑制剂rottlerin和c-Src抑制剂PP2均阻止了该事件。总而言之,我们的结果表明,细胞外HSP90α通过TLR4和PKCδ/ c-Src途径使EGFR / ErbB1反式激活,从而诱导ATP释放和胞质Ca2 +增加,并最终促进细胞迁移。当释放到肿瘤细胞微环境中时,这种机制可以解释HSPs对高级神经胶质瘤的有害作用。

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