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刺猬信号通路效应分子平滑蛋白在没有纤毛积累的情况下表现出信号传导能力。

The Hedgehog pathway effector smoothened exhibits signaling competency in the absence of ciliary accumulation.

作者信息

Fan Chih-Wei, Chen Baozhi, Franco Irene, Lu Jianming, Shi Heping, Wei Shuguang, Wang Changguang, Wu Xiaofeng, Tang Wei, Roth Michael G, Williams Noelle S, Hirsch Emilio, Chen Chuo, Lum Lawrence

机构信息

Department of Cell Biology, University of Texas Southwestern Medical Center, 5323 Harry Hines Boulevard, Dallas, TX 75390, USA.

Molecular Biotechnology Center, Department of Molecular Biotechnology and Health Sciences, University of Torino, 10126 Torino, Italy.

出版信息

Chem Biol. 2014 Dec 18;21(12):1680-9. doi: 10.1016/j.chembiol.2014.10.013. Epub 2014 Dec 4.

Abstract

Misactivation of the seven-transmembrane protein Smoothened (Smo) is frequently associated with basal cell carcinoma and medulloblastoma. Cellular exposure to secreted Hedgehog (Hh) protein or oncogenic mutations in Hh pathway components induces Smo accumulation in the primary cilium, an antenna-like organelle with mostly unknown cellular functions. Despite the data supporting an indispensable role of the primary cilium in Smo activation, the mechanistic underpinnings of this dependency remain unclear. Using a cell-membrane-impermeable Smo antagonist (IHR-1), we demonstrate that Smo supplied with a synthetic agonist or activated with oncogenic mutations can signal without ciliary accumulation. Similarly, cells with compromised ciliary Smo trafficking due to loss of the phosphatidylinositol-4-phosphate 3-kinase (PI3K)-C2α retain transcriptional response to an exogenously supplied Smo agonist. These observations suggest that assembly of a Smo-signaling complex in the primary cilium is not a prerequisite for Hh pathway activation driven by Smo agonists or oncogenic Smo molecules.

摘要

七跨膜蛋白 smoothened(Smo)的异常激活常与基底细胞癌和髓母细胞瘤相关。细胞暴露于分泌的 Hedgehog(Hh)蛋白或 Hh 信号通路成分中的致癌突变会诱导 Smo 在初级纤毛中积累,初级纤毛是一种类似天线的细胞器,其细胞功能大多未知。尽管有数据支持初级纤毛在 Smo 激活中不可或缺的作用,但这种依赖性的机制基础仍不清楚。使用一种细胞膜不可渗透的 Smo 拮抗剂(IHR-1),我们证明,配备合成激动剂或因致癌突变而激活的 Smo 可以在不发生纤毛积累的情况下发出信号。同样,由于磷脂酰肌醇-4-磷酸 3-激酶(PI3K)-C2α缺失而导致纤毛 Smo 转运受损的细胞,对外源性提供的 Smo 激动剂仍保持转录反应。这些观察结果表明,初级纤毛中 Smo 信号复合物的组装不是由 Smo 激动剂或致癌性 Smo 分子驱动的 Hh 信号通路激活的先决条件。

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