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Characterization of inhibitors of glucocorticoid receptor nuclear translocation: A model of cytoplasmic dynein-mediated cargo transport

机译:糖皮质激素受体核转运抑制剂的表征:细胞质动力蛋白介导的货物运输模型

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摘要

Agonist-induced glucocorticoid receptor [GR] transport from the cytoplasm to the nucleus was used as a model to identify dynein-mediated cargo transport inhibitors. Cell-based screening of the library of pharmacologically active compound (LOPAC)-1280 collection identified several small molecules that stalled the agonist-induced transport of GR-green fluorescent protein (GFP) in a concentration-dependent manner. Fluorescent images of microtubule organization, nuclear DNA staining, expression of GR-GFP, and its subcellular distribution were inspected and quantified by image analysis to evaluate the impact of compounds on cell morphology, toxicity, and GR transport. Given the complexity of the multi-protein complex involved in dynein-mediated cargo transport and the variety of potential mechanisms for interruption of that process, we therefore developed and validated a panel of biochemical assays to investigate some of the more likely intracellular target(s) of the GR transport inhibitors. Although the apomorphine enantiomers exhibited the most potency toward the ATPase activities of cytoplasmic dynein, myosin, and the heat-shock proteins (HSPs), their apparent lack of specificity made them unattractive for further study in our quest. Other molecules appeared to be nonspecific inhibitors that targeted reactive cysteines of proteins. Ideally, specific retrograde transport inhibitors would either target dynein itself or one of the other important proteins associated with the transport process. Although the hits from the cell-based screen of the LOPAC-1280 collection did not exhibit this desired profile, this screening platform provided a promising phenotypic system for the discovery of dynein/HSP modulators.
机译:激动剂诱导的糖皮质激素受体[GR]从细胞质向细胞核的转运被用作鉴定动力蛋白介导的货物转运抑制剂的模型。基于细胞的药理活性化合物(LOPAC)-1280集合库的筛选确定了几个小分子,这些小分子以浓度依赖的方式阻止了激动剂诱导的GR-绿色荧光蛋白(GFP)的转运。通过图像分析检查并定量了微管组织,核DNA染色,GR-GFP表达及其亚细胞分布的荧光图像,以评估化合物对细胞形态,毒性和GR转运的影响。鉴于动力蛋白介导的货物运输中涉及的多种蛋白质复合物的复杂性以及中断该过程的各种潜在机制,因此,我们开发并验证了一组生化分析方法,以研究一些更可能的细胞内靶标GR运输抑制剂。尽管阿朴吗啡对映异构体对细胞质动力蛋白,肌球蛋白和热休克蛋白(HSP)的ATPase活性表现出最大的功效,但它们显然缺乏特异性,使其在我们的研究中缺乏吸引力。其他分子似乎是靶向蛋白质反应性半胱氨酸的非特异性抑制剂。理想情况下,特定的逆行转运抑制剂将靶向动力蛋白本身或与转运过程相关的其他重要蛋白质之一。尽管从LOPAC-1280收集器的基于细胞的筛选中获得的结果未显示出所需的特征,但该筛选平台为发现动力蛋白/ HSP调节剂提供了有希望的表型系统。

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