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雌二醇对雌激素受体α基因表达和活性的影响可由ErbB2/PI 3-K/Akt信号通路调控。

Effect of estradiol on estrogen receptor-alpha gene expression and activity can be modulated by the ErbB2/PI 3-K/Akt pathway.

作者信息

Stoica Gerald E, Franke Thomas F, Moroni Maria, Mueller Susette, Morgan Elisha, Iann Mary C, Winder Abigail D, Reiter Ronald, Wellstein Anton, Martin Mary Beth, Stoica Adriana

机构信息

Department of Oncology, Lombardi Cancer Center, Georgetown University, Washington DC 20057, USA.

出版信息

Oncogene. 2003 Sep 11;22(39):7998-8011. doi: 10.1038/sj.onc.1206769.

Abstract

Epidermal growth factor (EGF), insulin-like growth factor-I (IGF-I), and heregulin-beta1 (HRG-beta1), can modulate the expression and activity of the estrogen receptor-alpha (ER-alpha) via the phosphatidylinositol 3-kinase (PI 3-K)/Akt pathway in the ER-alpha-positive breast cancer cell line, MCF-7. Estradiol can also rapidly activate PI 3-K/Akt in these cells (nongenomic effect). The recent study examines whether Akt is involved in the ER-alpha regulation by estradiol (genomic effect). Stable transfection of parental MCF-7 cells with a dominant-negative Akt mutant, as well as the PI 3-K inhibitors wortmannin and LY 294,002, blocked the effect of estradiol on ER-alpha expression and activity by 70-80 and 55-63%, respectively. Stable transfection of MCF-7 cells with a constitutively active Akt mimicked the effect of estradiol. The changes in ER-alpha expression and activity were abrogated in response to estradiol by an arginine to cysteine mutation in the pleckstrin homology (PH) domain of Akt (R25C), suggesting the involvement of this amino acid in the interaction between Akt and ER-alpha. Experiments employing selective ErbB inhibitors demonstrate that the effect of estradiol on ER-alpha expression and activity is mediated by ErbB2 and not by EGFR. Moreover, anchorage-dependent and -independent growth assays, cell cycle and membrane ruffling analyses showed that Akt exerts estrogen-like activity on cell growth and membrane ruffling and that a selective ErbB2 inhibitor, but not anti-ErbB2 antibodies directed to the extracellular domain, can block these effects. In the presence of constitutively active Akt, tamoxifen only partially inhibits cell growth. In contrast, in cells stably transfected with either a dominant-negative Akt or with R25C-Akt, as well as in parental cells in the presence of a selective ErbB2 inhibitor, the effect of estradiol on anchorage-dependent and -independent cell growth was inhibited by 50-75 and 100%, respectively. Dominant-negative Akt inhibited membrane ruffling by 54%; however, R25C-Akt did not have any effect, suggesting that kinase activity plays an important role in this process. Scatchard analysis demonstrated a 67% reduction in estrogen-binding capacity in cells transfected with constitutively active Akt. No change in binding affinity of estradiol to the receptor was observed upon transfection with either Akt mutant. Taken together, our results suggest that estradiol treatment results in binding to membrane ER-alpha and interaction with a heterodimer containing ErbB2, leading to tyrosine phosphorylation. This results in the activation of PI 3-K and Akt. Akt, in turn, may interact with nuclear ER-alpha, altering its expression and activity.

摘要

表皮生长因子(EGF)、胰岛素样生长因子-I(IGF-I)和神经调节蛋白-β1(HRG-β1),可通过磷脂酰肌醇3-激酶(PI 3-K)/Akt信号通路,调节雌激素受体-α(ER-α)的表达和活性,该过程发生于ER-α阳性乳腺癌细胞系MCF-7中。雌二醇也可在这些细胞中快速激活PI 3-K/Akt(非基因组效应)。最近的研究探讨了Akt是否参与雌二醇对ER-α的调节作用(基因组效应)。用显性负性Akt突变体稳定转染亲本MCF-7细胞,以及使用PI 3-K抑制剂渥曼青霉素和LY 294,002,分别使雌二醇对ER-α表达和活性的影响降低了70 - 80%和55 - 63%。用组成型活性Akt稳定转染MCF-7细胞,模拟了雌二醇的作用。通过Akt的普列克底物蛋白同源(PH)结构域中的精氨酸突变为半胱氨酸(R25C),可消除雌二醇引起的ER-α表达和活性变化,这表明该氨基酸参与了Akt与ER-α之间的相互作用。采用选择性ErbB抑制剂的实验表明,雌二醇对ER-α表达和活性的影响是由ErbB2介导的,而非表皮生长因子受体(EGFR)。此外,贴壁依赖性和非贴壁依赖性生长试验、细胞周期和膜皱襞分析表明,Akt对细胞生长和膜皱襞具有雌激素样活性,并且一种选择性ErbB2抑制剂可阻断这些效应,而针对细胞外结构域的抗ErbB2抗体则不能。在存在组成型活性Akt时,他莫昔芬仅部分抑制细胞生长。相反,在稳定转染显性负性Akt或R25C-Akt的细胞中,以及在存在选择性ErbB2抑制剂的亲本细胞中,雌二醇对贴壁依赖性和非贴壁依赖性细胞生长的影响分别被抑制了50 - 75%和100%。显性负性Akt使膜皱襞减少了54%;然而,R25C-Akt没有任何作用,这表明激酶活性在这一过程中起重要作用。Scatchard分析表明,用组成型活性Akt转染的细胞中,雌激素结合能力降低了67%。用任何一种Akt突变体转染后,均未观察到雌二醇与受体结合亲和力的变化

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