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Engineered Systems for Detection and Discovery of Nuclear Hormone-Like Compounds

机译:工程化系统,用于检测和发现类似核激素的化合物

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Biomolecular engineering has many applications in the identification of potentially therapeutic compounds.An important class of these compounds is those that bind and modulate the activity of the human nuclear hormone receptors(NHRs).NHRs are typically made up of clearly defined domains with known function,including one that mediates ligand recognition and NHR activation.Engineered systems that include these ligand-binding domains(LBDs)can be used to identify potential therapeutic ligands that target a given NHR.These methods must couple the binding event to a readily detectable signal,ideally in a high-throughput format.Recent efforts have delivered a variety of new techniques,including those that involve fusions of LBDs to easily assayed reporter proteins.In some cases these systems allow hormone-dependent selectable phenotypes to be generated in non-native hosts,providing potential tools for both isolation and evolution of new therapeutics in vivo.Here we provide an overview and a comparison of many of the available tools in this area,with an emphasis on a novel allosteric hormone-regulated sensor protein that provides ligand-dependent phenotypes in the relatively simple background of Escherichia coli bacterial cells.
机译:生物分子工程学在鉴定潜在治疗化合物方面有许多应用。这些化合物的重要一类是能结合和调节人类核激素受体(NHRs)活性的化合物。NHR通常由功能明确,结构已知的结构域组成,包括介导配体识别和NHR激活的一种配体在内的工程系统可用于鉴定靶向给定NHR的潜在治疗性配体。这些方法必须将结合事件与易于检测的信号理想地偶联最近的努力已经提出了各种各样的新技术,包括那些将LBD融合到易于检测的报告蛋白上的技术。在某些情况下,这些系统允许在非本地宿主中产生激素依赖性选择表型,提供了用于体内新疗法的分离和进化的潜在工具。对这一领域中许多可用工具的比较,重点是新型变构激素调节的传感器蛋白,该蛋白在相对简单的大肠杆菌细菌细胞背景下提供依赖配体的表型。

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