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Epidermal growth factor-induced mobilization of a ganglioside-specific sialidase (NEU3) to membrane ruffles

机译:表皮生长因子诱导的神经节苷脂特异性唾液酸酶(NEU3)动员到膜皱纹

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摘要

Human ganglioside-specific sialidase, NEU3, localized at cell membranes is thought to regulate various biological processes at cell surfaces. We here explored functional subcellular localization of the sialidase by immunofluorescence and found accumulation at leading edges of cell membranes in the presence of serum in culture. In response to EGF, the sialidase redistributed rapidly to ruffling cell membranes of squamous carcinoma A431 cells and co-localized with Rac-1. NEU3 overexpression enhanced Rac-1 activation and cell migration as compared with controls in HeLa cells as well as in A431 cells. Consistent with co-localization with Rac-1 by immunofluorescence, NEU3 was found to co-precipitate with activated Rac bound to GST-PAK-1 fusion protein. NEU3 silencing by siRNA, in contrast, resulted in inhibition of Rac-1 activation. These results indicate that NEU3 is able to mobilize to membrane ruffles in response to growth stimuli and activate the Rac-1 signaling by co-localization with Rac-1, leading to increased cell motility. (c) 2006 Elsevier Inc. All rights reserved.
机译:人们认为,位于细胞膜上的人神经节苷脂特异性唾液酸酶NEU3可以调节细胞表面的各种生物学过程。我们在这里通过免疫荧光探索了唾液酸酶的功能性亚细胞定位,并在培养物中存在血清的情况下发现了细胞膜前缘的积累。响应EGF,唾液酸酶迅速重新分布到鳞状细胞癌A431细胞的波纹细胞膜中,并与Rac-1共定位。与HeLa细胞和A431细胞中的对照相比,NEU3过表达增强了Rac-1活化和细胞迁移。与通过免疫荧光法与Rac-1共定位一致,发现NEU3与与GST-PAK-1融合蛋白结合的活化Rac共沉淀。相反,siRNA使NEU3沉默,导致抑制Rac-1激活。这些结果表明,NEU3能够响应生长刺激而动员到膜褶皱并通过与Rac-1共同定位激活Rac-1信号传导,从而导致细胞运动性增强。 (c)2006 Elsevier Inc.保留所有权利。

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