Suppr超能文献

斑马鱼雌激素受体α、β1和β2的同源建模配体结合域:从计算机模拟到作为模型系统的斑马鱼中雌激素相互作用的体内研究。

Homology-modeled ligand-binding domains of zebrafish estrogen receptors alpha, beta1, and beta2: from in silico to in vivo studies of estrogen interactions in Danio rerio as a model system.

作者信息

Costache Aurora D, Pullela Phani Kumar, Kasha Purnachandar, Tomasiewicz Henry, Sem Daniel S

机构信息

Chemical Proteomics Facility at Marquette, Department of Chemistry, Marquette University, P.O. Box 1881, Milwaukee, WI 53201, USA.

出版信息

Mol Endocrinol. 2005 Dec;19(12):2979-90. doi: 10.1210/me.2004-0435. Epub 2005 Aug 4.

Abstract

Homology models were constructed for the ligand-binding domains of zebrafish estrogen receptors (zfERs) alpha, beta(1), and beta(2). Estradiol-binding sites are nearly identical in zfERs and their human homologs, suggesting that zebrafish will serve as a good model system for studying human ER-binding drugs. Conversely, studies of endocrine disruptor effects on zebrafish will benefit from the wealth of data available on xenoestrogen interactions with human ERs. Compounds flagged by the Interagency Coordinating Committee on the Validation of Alternative Methods for endocrine disruptor screening were docked into our zfER homology models. Ideally, these in silico docking studies would be complemented with in vivo binding studies. To this end, fluorescently tagged estradiol was docked into zfERalpha and found to bind in the same manner as in human ERalpha, with fluorescein preferentially occupying a region between helices 11 and 12. Fluorescently tagged estradiol was synthesized and was found to localize along the path of primordial germ cell migration in the developing zebrafish embryo 3 d after fertilization, consistent with previous reports of 1) a role for estradiol in sex determination, and 2) the first appearance of ERs 2 d after fertilization. These data provide a foundation for future in silico and in vivo binding studies of estrogen agonists and antagonists with zebrafish ERs.

摘要

构建了斑马鱼雌激素受体(zfERs)α、β(1)和β(2)配体结合域的同源模型。雌二醇结合位点在zfERs及其人类同源物中几乎相同,这表明斑马鱼将成为研究人类雌激素受体结合药物的良好模型系统。相反,关于内分泌干扰物对斑马鱼影响的研究将受益于现有的大量关于异雌激素与人类雌激素受体相互作用的数据。由内分泌干扰物筛选替代方法验证跨部门协调委员会标记的化合物被对接至我们构建的zfER同源模型中。理想情况下,这些计算机模拟对接研究应辅以体内结合研究。为此,将荧光标记的雌二醇对接至zfERα,发现其结合方式与人类ERα相同,荧光素优先占据螺旋11和12之间的区域。合成了荧光标记的雌二醇,并发现其在受精后3天沿着发育中的斑马鱼胚胎中原始生殖细胞迁移的路径定位,这与之前关于1)雌二醇在性别决定中的作用,以及2)受精后2天雌激素受体首次出现的报道一致。这些数据为未来关于雌激素激动剂和拮抗剂与斑马鱼雌激素受体的计算机模拟和体内结合研究奠定了基础。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验