Division of Pulmonary and Vascular Biology, Department of Pediatrics, University of Texas Southwestern Medical Center, Dallas, Texas 75390-9063, USA.
J Clin Invest. 2010 Jul;120(7):2319-30. doi: 10.1172/JCI38291. Epub 2010 Jun 23.
Steroid hormone receptors function classically in the nucleus as transcription factors. However, recent data indicate that there are also non-nuclear subpopulations of steroid hormone receptors, including estrogen receptors (ERs), that mediate membrane-initiated signaling of unclear basis and significance. Here we have shown that an estrogen-dendrimer conjugate (EDC) that is excluded from the nucleus stimulates endothelial cell proliferation and migration via ERalpha, direct ERalpha-Galphai interaction, and endothelial NOS (eNOS) activation. Analysis of mice carrying an estrogen response element luciferase reporter, ER-regulated genes in the mouse uterus, and eNOS enzyme activation further indicated that EDC specifically targets non-nuclear processes in vivo. In mice, estradiol and EDC equally stimulated carotid artery reendothelialization in an ERalpha- and G protein-dependent manner, and both agents attenuated the development of neointimal hyperplasia following endothelial injury. In contrast, endometrial carcinoma cell growth in vitro and uterine enlargement and MCF-7 cell breast cancer xenograft growth in vivo were stimulated by estradiol but not EDC. Thus, EDC is a non-nuclear selective ER modulator (SERM) in vivo, and in mice, non-nuclear ER signaling promotes cardiovascular protection. These processes potentially could be harnessed to provide vascular benefit without increasing the risk of uterine or breast cancer.
甾体激素受体作为转录因子在核内发挥经典作用。然而,最近的数据表明,甾体激素受体也存在非核亚群,包括雌激素受体(ERs),它们介导基于膜的信号转导,但基础和意义尚不清楚。在这里,我们已经表明,一种雌激素-树枝状聚合物缀合物(EDC),该缀合物被排除在核外,通过 ERalpha、ERalpha-Galphai 直接相互作用和内皮型一氧化氮合酶(eNOS)激活来刺激内皮细胞增殖和迁移。对携带雌激素反应元件荧光素酶报告基因的小鼠、小鼠子宫中受 ER 调节的基因和 eNOS 酶激活的分析进一步表明,EDC 特异性靶向体内的非核过程。在小鼠中,雌二醇和 EDC 以 ERalpha 和 G 蛋白依赖性方式同等地刺激颈动脉再内皮化,并且两种试剂均减轻内皮损伤后的新生内膜增生发展。相比之下,体外子宫内膜癌细胞生长和体内子宫增大以及 MCF-7 细胞乳腺癌异种移植生长仅受雌二醇刺激,不受 EDC 刺激。因此,EDC 是体内的非核选择性雌激素受体调节剂(SERM),并且在小鼠中,非核 ER 信号转导促进心血管保护。这些过程有可能被利用来提供血管益处,而不会增加子宫或乳腺癌的风险。