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Hippo/Mst1 通过 FoxO1 依赖性方式刺激促凋亡介质 NOXA 的转录。

Hippo/Mst1 stimulates transcription of the proapoptotic mediator NOXA in a FoxO1-dependent manner.

机构信息

Molecular Therapy Group, Institute of Biotechnology, Academy of Sciences of the Czech Republic, Prague, Czech Republic.

出版信息

Cancer Res. 2011 Feb 1;71(3):946-54. doi: 10.1158/0008-5472.CAN-10-2203. Epub 2011 Jan 18.

Abstract

The proapoptotic protein Noxa, a member of the BH3-only Bcl-2 protein family, can effectively induce apoptosis in cancer cells, although the relevant regulatory pathways have been obscure. Previous studies of the cytotoxic effects of α-tocopheryl succinate (α-TOS) on cancer cells identified a mechanism whereby α-TOS caused apoptosis requiring the Noxa-Bak axis. In the present study, ab initio analysis revealed a conserved FoxO-binding site (DBE; DAF-16 binding element) in the NOXA promoter, and specific affinity of FoxO proteins to this DBE was confirmed by fluorescence anisotropy. FoxO1 and FoxO3a proteins accumulated in the nucleus of α-TOS-treated cells, and the drug-induced specific FoxO1 association with the NOXA promoter and its activation were validated by chromatin immunoprecipitation. Using siRNA knockdown, a specific role for the FoxO1 protein in activating NOXA transcription in cancer cells was identified. Furthermore, the proapoptotic kinase Hippo/Mst1 was found to be strongly activated by α-TOS, and inhibiting Hippo/Mst1 by specific siRNA prevented phosphorylation of FoxO1 and its nuclear translocation, thereby reducing levels of NOXA transcription and apoptosis in cancer cells exposed to α-TOS. Thus, we have demonstrated that anticancer drugs, exemplified by α-TOS, induce apoptosis by a mechanism involving the Hippo/Mst1-FoxO1-Noxa pathway. We propose that activation of this pathway provides a new paradigm for developing targeted cancer treatments.

摘要

促凋亡蛋白 Noxa 是 BH3-only Bcl-2 蛋白家族的成员,能够有效诱导癌细胞凋亡,但其相关调控途径尚不清楚。先前关于α-生育酚琥珀酸酯 (α-TOS) 对癌细胞细胞毒性作用的研究发现了一种机制,即 α-TOS 通过 Noxa-Bak 轴引起凋亡。在本研究中,从头分析揭示了 NOXA 启动子中存在一个保守的 FoxO 结合位点(DBE;DAF-16 结合元件),并通过荧光各向异性证实了 FoxO 蛋白对该 DBE 的特异性亲和力。FoxO1 和 FoxO3a 蛋白在 α-TOS 处理的细胞中积累在核内,药物诱导的 FoxO1 与 NOXA 启动子的特异性结合及其激活通过染色质免疫沉淀得到了验证。通过 siRNA 敲低,鉴定了 FoxO1 蛋白在激活癌细胞中 NOXA 转录中的特异性作用。此外,发现 Hippo/Mst1 促凋亡激酶被 α-TOS 强烈激活,通过特异性 siRNA 抑制 Hippo/Mst1 可阻止 FoxO1 的磷酸化及其核易位,从而降低α-TOS 处理的癌细胞中 NOXA 转录和凋亡的水平。因此,我们已经证明,以 α-TOS 为代表的抗癌药物通过涉及 Hippo/Mst1-FoxO1-Noxa 通路的机制诱导细胞凋亡。我们提出,激活该通路为开发靶向癌症治疗提供了新的范例。

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