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通过高通量成像进行雄激素受体功能分析:配体、细胞周期及突变特异性效应的测定

Androgen receptor functional analyses by high throughput imaging: determination of ligand, cell cycle, and mutation-specific effects.

作者信息

Szafran Adam T, Szwarc Maria, Marcelli Marco, Mancini Michael A

机构信息

Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, Texas, USA.

出版信息

PLoS One. 2008;3(11):e3605. doi: 10.1371/journal.pone.0003605. Epub 2008 Nov 3.

Abstract

BACKGROUND

Understanding how androgen receptor (AR) function is modulated by exposure to steroids, growth factors or small molecules can have important mechanistic implications for AR-related disease therapies (e.g., prostate cancer, androgen insensitivity syndrome, AIS), and in the analysis of environmental endocrine disruptors.

METHODOLOGY/PRINCIPAL FINDINGS: We report the development of a high throughput (HT) image-based assay that quantifies AR subcellular and subnuclear distribution, and transcriptional reporter gene activity on a cell-by-cell basis. Furthermore, simultaneous analysis of DNA content allowed determination of cell cycle position and permitted the analysis of cell cycle dependent changes in AR function in unsynchronized cell populations. Assay quality for EC50 coefficients of variation were 5-24%, with Z' values reaching 0.91. This was achieved by the selective analysis of cells expressing physiological levels of AR, important because minor over-expression resulted in elevated nuclear speckling and decreased transcriptional reporter gene activity. A small screen of AR-binding ligands, including known agonists, antagonists, and endocrine disruptors, demonstrated that nuclear translocation and nuclear "speckling" were linked with transcriptional output, and specific ligands were noted to differentially affect measurements for wild type versus mutant AR, suggesting differing mechanisms of action. HT imaging of patient-derived AIS mutations demonstrated a proof-of-principle personalized medicine approach to rapidly identify ligands capable of restoring multiple AR functions.

CONCLUSIONS/SIGNIFICANCE: HT imaging-based multiplex screening will provide a rapid, systems-level analysis of compounds/RNAi that may differentially affect wild type AR or clinically relevant AR mutations.

摘要

背景

了解雄激素受体(AR)功能如何受到类固醇、生长因子或小分子的影响,对于AR相关疾病的治疗(如前列腺癌、雄激素不敏感综合征,AIS)以及环境内分泌干扰物的分析具有重要的机制意义。

方法/主要发现:我们报告了一种基于高通量(HT)图像的检测方法的开发,该方法可在逐个细胞的基础上量化AR的亚细胞和亚核分布以及转录报告基因活性。此外,通过对DNA含量的同步分析可以确定细胞周期位置,并允许分析未同步化细胞群体中AR功能的细胞周期依赖性变化。EC50变异系数的检测质量为5-24%,Z'值达到0.91。这是通过对表达生理水平AR的细胞进行选择性分析实现的,这一点很重要,因为轻微的过表达会导致核斑点增加和转录报告基因活性降低。对包括已知激动剂、拮抗剂和内分泌干扰物在内的AR结合配体进行的小规模筛选表明,核转位和核“斑点”与转录输出相关,并且特定配体对野生型与突变型AR的测量有不同影响,提示作用机制不同。对患者来源的AIS突变进行的HT成像证明了一种原理验证的个性化医疗方法,可快速识别能够恢复多种AR功能的配体。

结论/意义:基于HT成像的多重筛选将为可能对野生型AR或临床相关AR突变产生不同影响的化合物/RNAi提供快速的系统水平分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61fe/2572143/2e84377addd4/pone.0003605.g001.jpg

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