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胰岛素样生长因子1/胰岛素信号通过Foxo1与雄激素受体的直接相互作用激活雄激素信号。

Insulin-like growth factor 1/insulin signaling activates androgen signaling through direct interactions of Foxo1 with androgen receptor.

作者信息

Fan WuQiang, Yanase Toshihiko, Morinaga Hidetaka, Okabe Taijiro, Nomura Masatoshi, Daitoku Hiroaki, Fukamizu Akiyoshi, Kato Shigeaki, Takayanagi Ryoichi, Nawata Hajime

机构信息

Department of Medicine and Bioregulatory Science, Graduate School of Medical Science, Kyushu University, Maidashi 3-1-1, Higashi-ku, Fukuoka 812-8582.

出版信息

J Biol Chem. 2007 Mar 9;282(10):7329-38. doi: 10.1074/jbc.M610447200. Epub 2007 Jan 2.

Abstract

The androgen-androgen receptor (AR) system plays vital roles in a wide array of biological processes, including prostate cancer development and progression. Several growth factors, such as insulin-like growth factor 1 (IGF1), can induce AR activation, whereas insulin resistance and hyperinsulinemia are correlated with an elevated incidence of prostate cancer. Here we report that Foxo1, a downstream molecule that becomes phosphorylated and inactivated by phosphatidylinositol 3-kinase/Akt kinase in response to IGF1 or insulin, suppresses ligand-mediated AR transactivation. Foxo1 reduces androgen-induced AR target gene expressions and suppresses the in vitro growth of prostate cancer cells. These inhibitory effects of Foxo1 are attenuated by IGF1 but are enhanced when it is rendered Akt-nonphosphorylatable. Foxo1 interacts directly with the C terminus of AR in a ligand-dependent manner and disrupts ligand-induced AR subnuclear compartmentalization. Foxo1 is recruited by liganded AR to the chromatin of AR target gene promoters, where it interferes with AR-DNA interactions. IGF1 or insulin abolish the Foxo1 occupancy of these promoters. Of interest, a positive feedback circuit working locally in an autocrine/intracrine manner may exist, because liganded AR up-regulates IGF1 receptor expression in prostate cancer cells, presumably resulting in higher IGF1 signaling tension and further enhancing the functions of the receptor itself. Thus, Foxo1 is a novel corepressor for AR, and IGF1/insulin signaling may confer stimulatory effects on AR by attenuating Foxo1 inhibition. These results highlight the potential involvement of metabolic syndrome and hyperinsulinemia in prostate diseases and further suggest that intervention of IGF1/insulin-phosphatidylinositol 3-kinase-Akt signaling may be of clinical value for prostate diseases.

摘要

雄激素 - 雄激素受体(AR)系统在包括前列腺癌发生和发展在内的一系列生物学过程中发挥着至关重要的作用。几种生长因子,如胰岛素样生长因子1(IGF1),可诱导AR激活,而胰岛素抵抗和高胰岛素血症与前列腺癌发病率升高相关。在此我们报告,Foxo1作为一种下游分子,在响应IGF1或胰岛素时会被磷脂酰肌醇3激酶/Akt激酶磷酸化并失活,它可抑制配体介导的AR反式激活。Foxo1可降低雄激素诱导的AR靶基因表达,并抑制前列腺癌细胞的体外生长。Foxo1的这些抑制作用会被IGF1减弱,但当它不能被Akt磷酸化时则会增强。Foxo1以配体依赖的方式直接与AR的C末端相互作用,并破坏配体诱导的AR亚核区室化。配体结合的AR将Foxo1招募到AR靶基因启动子的染色质上,在那里它干扰AR与DNA的相互作用。IGF1或胰岛素会消除Foxo1对这些启动子的占据。有趣的是,可能存在一种以自分泌/内分泌方式在局部起作用的正反馈回路,因为配体结合的AR上调前列腺癌细胞中IGF1受体的表达,大概会导致更高的IGF1信号张力并进一步增强受体自身的功能。因此,Foxo1是AR的一种新型共抑制因子,而IGF1/胰岛素信号传导可能通过减弱Foxo1的抑制作用而对AR产生刺激作用。这些结果突出了代谢综合征和高胰岛素血症在前列腺疾病中的潜在作用,并进一步表明干预IGF1/胰岛素 - 磷脂酰肌醇3激酶 - Akt信号传导可能对前列腺疾病具有临床价值。

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