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Chemical Toolkit for PARK7: Potent, Selective, and High-Throughput

机译:PARK7 化学工具包:高效、选择性和高通量

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摘要

The multifunctional human Parkinson's disease protein 7 (PARK7/DJ1) is an attractive therapeutic target due to its link with early-onset Parkinson's disease, upregulation in various cancers, and contribution to chemoresistance. However, only a few compounds have been identified to bind PARK7 due to the lack of a dedicated chemical toolbox. We report the creation of such a toolbox and showcase the application of each of its components. The selective PARK7 submicromolar inhibitor with a cyanimide reactive group covalently modifies the active site Cys106. Installment of different dyes onto the inhibitor delivered two PARK7 probes. The Rhodamine110 probe provides a high-throughput screening compatible FP assay, showcased by screening a compound library (8000 molecules). The SulfoCy5-equipped probe is a valuable tool to assess the effect of PARK7 inhibitors in a cell lysate. Our work creates new possibilities to explore PARK7 function in a physiologically relevant setting and develop new and improved PARK7 inhibitors.
机译:多功能人帕金森病蛋白 7 (PARK7/DJ1) 是一个有吸引力的治疗靶点,因为它与早发性帕金森病有关,在各种癌症中上调,并有助于化疗耐药性。然而,由于缺乏专用的化学工具箱,只有少数化合物被鉴定出可以结合 PARK7。我们报告了这样一个工具箱的创建,并展示了其每个组件的应用。具有氰胺反应性基团的选择性 PARK7 亚微摩尔抑制剂共价修饰活性位点 Cys106。将不同的染料安装到抑制剂上,得到两个 PARK7 探针。Rhodamine110 探针通过筛选化合物库(8000 个分子)进行高通量筛选兼容 FP 测定。配备 SulfoCy5 的探针是评估 PARK7 抑制剂在细胞裂解物中的作用的宝贵工具。我们的工作为在生理相关环境中探索PARK7功能并开发新的和改进的PARK7抑制剂创造了新的可能性。

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