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Cellular and Biophysical Pipeline for the Screening of Peroxisome Proliferator-Activated Receptor Beta/Delta Agonists: Avoiding False Positives

机译:用于筛选过氧化物酶体增殖物激活的受体β/δ激动剂的细胞和生物物理管道:避免假阳性

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摘要

Peroxisome proliferator-activated receptor beta/delta (PPARß/δ) is considered a therapeutic target for metabolic disorders, cancer, and cardiovascular diseases. Here, we developed one pipeline for the screening of PPARß/δ agonists, which reduces the cost, time, and false-positive hits. The first step is an optimized 3-day long cellular transactivation assay based on reporter-gene technology, which is supported by automated liquid-handlers. This primary screening is followed by a confirmatory transactivation assay and by two biophysical validation methods (thermal shift assay (TSA) and (ANS) fluorescence quenching), which allow the calculation of the affinity constant, giving more information about the selected hits. All of the assays were validated using well-known commercial agonists providing trustworthy data. Furthermore, to validate and test this pipeline, we screened a natural extract library (560 extracts), and we found one plant extract that might be interesting for PPARß/δ modulation. In conclusion, our results suggested that we developed a cheaper and more robust pipeline that goes beyond the single activation screening, as it also evaluates PPARß/δ tertiary structure stabilization and the ligand affinity constant, selecting only molecules that directly bind to the receptor. Moreover, this approach might improve the effectiveness of the screening for agonists that target PPARß/δ for drug development.
机译:过氧化物酶体增殖物激活受体β/δ(PPARß/δ)被认为是代谢紊乱,癌症和心血管疾病的治疗靶标。在这里,我们开发了一种筛选PPARß/δ激动剂的管道,可降低成本,时间和假阳性结果。第一步是基于报告基因技术的优化的三天长细胞反式激活试验,该方法由自动液体处理机支持。初步筛选后是确认性反式激活测定法和两种生物物理验证方法(热位移测定法(TSA)和(ANS)荧光猝灭法),可以计算亲和常数,从而提供有关所选命中的更多信息。所有测定均使用提供可靠数据的著名商业激动剂进行了验证。此外,为了验证和测试该管道,我们筛选了一个天然提取物库(560个提取物),发现一种植物提取物可能对PPARß/δ调节很有趣。总之,我们的结果表明,我们开发了一种更便宜,更耐用的管线,该管线超出了单次激活筛选的范围,因为它还评估了PPARß/δ三级结构的稳定性和配体亲和常数,仅选择了直接与受体结合的分子。此外,这种方法可能会提高针对以PPARß/δ为药物开发靶点的激动剂的筛选效率。

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