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首页> 外文期刊>Journal of biomolecular screening: The official journal of the Society for Biomolecular Screening >An ultra-high throughput cell-based screen for wee1 degradation inhibitors
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An ultra-high throughput cell-based screen for wee1 degradation inhibitors

机译:基于超高通量细胞的wee1降解抑制剂筛选

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The tyrosine kinase Wee1 is part of a key cellular sensing mechanism that signals completion of DNA replication, ensuring proper timing of entry into mitosis. Wee1 acts as an inhibitor of mitotic entry by phosphorylating cyclin-dependent kinase CDK1. Wee1 activity is mainly regulated at the protein level through its phosphorylation and subsequent degradation by the ubiquitin proteasome pathway. To facilitate identification of small molecules preventing Wee1 degradation, a homogeneous cell-based assay was developed using HeLa cells transiently transfected with a Wee1-luciferase fusion protein. To ensure ultra-high-throughput screening (uHTS) compatibility, the assay was scaled to a 1536-well plate format and cells were transfected in bulk and cryopreserved. This miniaturized homogeneous assay demonstrated robust performance, with a calculated Z′ factor of 0.65 ± 0.05. The assay was screened against a publicly available library of ~218,000 compounds to identify Wee1 stabilizers. Nonselective, cytotoxic, and promiscuous compounds were rapidly triaged through the use of a similarly formatted counter-screen that measured stabilization of an N-cyclin B-luciferase fusion protein, as well as execution of viability assessment in the parental HeLa cell line. This screening campaign led to the discovery of 4 unrelated cell-permeable small molecules that showed selective Wee1-luciferase stabilization with micromolar potency. One of these compounds, SID4243143 (ML 118), was shown to inhibit cell cycle progression, underscoring the importance of Wee1 degradation to the cell cycle. Results suggest that this uHTS approach is suitable for identifying selective chemical probes that prevent Wee1 degradation and generally applicable to discovering inhibitors of the ubiquitin proteasome pathway.
机译:酪氨酸激酶Wee1是关键细胞传感机制的一部分,该机制可发出信号指示DNA复制完成,从而确保进入有丝分裂的适当时机。 Wee1通过使细胞周期蛋白依赖性激酶CDK1磷酸化而成为有丝分裂进入的抑制剂。 Wee1活性主要通过其磷酸化和随后的遍在蛋白蛋白酶体途径的降解而在蛋白质水平上调控。为了促进识别阻止Wee1降解的小分子,使用瞬时转染了Wee1-萤光素酶融合蛋白的HeLa细胞开发了基于均质细胞的检测方法。为确保超高通量筛选(uHTS)兼容性,将测定法缩放至1536孔板格式,然后将细胞批量转染并冷冻保存。这种小型化的均相测定显示出稳定的性能,计算得出的Z'因子为0.65±0.05。针对约218,000种化合物的公开库筛选了该测定法,以鉴定Wee1稳定剂。非选择性,细胞毒性和混杂化合物通过使用类似格式的反筛选技术快速分类,该反筛选技术可测量N细胞周期蛋白B荧光素酶融合蛋白的稳定性,并在亲代HeLa细胞系中进行活力评估。这项筛选活动导致发现4个无关的细胞可渗透小分子,这些小分子表现出具有微摩尔效价的选择性Wee1-荧光素酶稳定作用。这些化合物之一SID4243143(ML 118)已显示出抑制细胞周期进程的作用,强调了Wee1降解对细胞周期的重要性。结果表明,这种uHTS方法适用于鉴定可防止Wee1降解的选择性化学探针,并且通常适用于发现泛素蛋白酶体途径的抑制剂。

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