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一组用于发现雌激素受体-共激活因子结合抑制剂的时间分辨荧光共振能量转移分析方法。

A set of time-resolved fluorescence resonance energy transfer assays for the discovery of inhibitors of estrogen receptor-coactivator binding.

作者信息

Gunther Jillian R, Du Yuhong, Rhoden Eric, Lewis Iestyn, Revennaugh Brian, Moore Terry W, Kim Sung Hoon, Dingledine Raymond, Fu Haian, Katzenellenbogen John A

机构信息

Department of Chemistry, University of Illinois, Urbana, IL 61801, USA.

出版信息

J Biomol Screen. 2009 Feb;14(2):181-93. doi: 10.1177/1087057108329349. Epub 2009 Feb 4.

Abstract

Therapeutic block of estrogen action is typically achieved with conventional antagonists (CAs), compounds that displace estradiol from the estrogen receptor (ER) and induce formation of an ER conformation that cannot bind to coactivator proteins, such as the steroid receptor coactivators (SRCs). As an alternative mode for blocking estrogen action, the authors seek small molecules that act as coactivator binding inhibitors (CBIs)-that is, they compete directly with SRC3 for interaction with estradiol-bound ER. CBIs would be interesting mechanistic probes of estrogen action and might also provide an alternative, more durable endocrine therapy for hormone-responsive breast cancer, where cellular adaptations lead to resistance to CAs. The authors have designed and optimized a set of time-resolved fluorescence resonance energy transfer (TR-FRET) assays to monitor the interaction of ER with SRC3 and ligands, and they have used them in high-throughput screens to discover small-molecule CBIs that are able to disrupt this interaction. These assays also distinguish CBIs from CAs. These robust and sensitive "mix-and-measure" assays use low concentrations of ER labeled with a europium chelate as FRET donor and a Cy5-labeled SRC as acceptor. This multiplexed protocol produces excellent signal-to-noise ratios (>100) and Z' values (>0.8).

摘要

雌激素作用的治疗性阻断通常通过传统拮抗剂(CAs)来实现,这些化合物从雌激素受体(ER)上置换雌二醇,并诱导形成一种无法与共激活蛋白(如类固醇受体共激活因子(SRCs))结合的ER构象。作为阻断雌激素作用的另一种方式,作者寻找作为共激活因子结合抑制剂(CBIs)的小分子——也就是说,它们直接与SRC3竞争与雌激素结合的ER相互作用。CBIs可能是雌激素作用有趣的机制探针,也可能为激素反应性乳腺癌提供另一种更持久的内分泌治疗方法,因为细胞适应性会导致对CAs产生抗性。作者设计并优化了一组时间分辨荧光共振能量转移(TR-FRET)测定法,以监测ER与SRC3及配体的相互作用,并将其用于高通量筛选,以发现能够破坏这种相互作用的小分子CBIs。这些测定法还能区分CBIs和CAs。这些强大且灵敏的“混合并测量”测定法使用低浓度的用铕螯合物标记的ER作为FRET供体,以及用Cy5标记的SRC作为受体。这种多重方案产生了出色的信噪比(>100)和Z'值(>0.8)。

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