Harrington William R, Kim Sung Hoon, Funk Cory C, Madak-Erdogan Zeynep, Schiff Rachel, Katzenellenbogen John A, Katzenellenbogen Benita S
University of Illinois, Department of Molecular and Integrative Physiology, 524 Burrill Hall, 407 South Goodwin Avenue, Urbana, Illinois 61801-3704, USA.
Mol Endocrinol. 2006 Mar;20(3):491-502. doi: 10.1210/me.2005-0186. Epub 2005 Nov 23.
Estrogenic hormones are classically thought to exert their effects by binding to nuclear estrogen receptors and altering target gene transcription, but estrogens can also have nongenomic effects through rapid activation of membrane-initiated kinase cascades. The development of ligands that selectively activate only the nongenomic pathways would provide useful tools to investigate the significance of these pathways. We have prepared large, abiotic, nondegradable poly(amido)amine dendrimer macromolecules that are conjugated to multiple estrogen molecules through chemically robust linkages. Because of their charge and size, these estrogen-dendrimer conjugates (EDCs) remain outside the nucleus. They stimulate ERK, Shc, and Src phosphorylation in MCF-7 breast cancer cells at low concentrations, yet they are very ineffective in stimulating transcription of endogenous estrogen target genes, being approximately 10,000-fold less potent than estradiol in genomic actions. In contrast to estradiol, EDC was not effective in stimulating breast cancer cell proliferation. Because these EDC ligands activate nongenomic activity at concentrations at which they do not alter the transcription of estrogen target genes, they should be useful in studying extranuclear initiated pathways of estrogen action in a variety of target cells.
传统观点认为,雌激素通过与核雌激素受体结合并改变靶基因转录来发挥作用,但雌激素也可通过快速激活膜启动的激酶级联反应产生非基因组效应。开发仅选择性激活非基因组途径的配体将为研究这些途径的重要性提供有用工具。我们制备了大型、非生物、不可降解的聚(酰胺)胺树枝状大分子,它们通过化学稳定的连接与多个雌激素分子共轭。由于其电荷和大小,这些雌激素 - 树枝状大分子共轭物(EDC)保留在细胞核外。它们在低浓度下刺激MCF - 7乳腺癌细胞中的ERK、Shc和Src磷酸化,但在刺激内源性雌激素靶基因转录方面非常无效,在基因组作用中比雌二醇的效力低约10000倍。与雌二醇相反,EDC在刺激乳腺癌细胞增殖方面无效。由于这些EDC配体在不改变雌激素靶基因转录的浓度下激活非基因组活性,它们应有助于研究多种靶细胞中雌激素作用的核外启动途径。