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Parallel Chemical Genetic and Genome-Wide RNAi Screens Identify Cytokinesis Inhibitors and Targets

机译:并行化学遗传和全基因组RNAi筛查可确定胞质分裂抑制剂和靶标

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摘要

Cytokinesis involves temporally and spatially coordinated action of the cell cycle and cytoskeletal and membrane systems to achieve separation of daughter cells. To dissect cytokinesis mechanisms it would be useful to have a complete catalog of the proteins involved, and small molecule tools for specifically inhibiting them with tight temporal control. Finding active small molecules by cell-based screening entails the difficult step of identifying their targets. We performed parallel chemical genetic and genome-wide RNA interference screens in Drosophila cells, identifying 50 small molecule inhibitors of cytokinesis and 214 genes important for cytokinesis, including a new protein in the Aurora B pathway (Borr). By comparing small molecule and RNAi phenotypes, we identified a small molecule that inhibits the Aurora B kinase pathway. Our protein list provides a starting point for systematic dissection of cytokinesis, a direction that will be greatly facilitated by also having diverse small molecule inhibitors, which we have identified. Dissection of the Aurora B pathway, where we found a new gene and a specific small molecule inhibitor, should benefit particularly. Our study shows that parallel RNA interference and small molecule screening is a generally useful approach to identifying active small molecules and their target pathways.
机译:细胞分裂涉及细胞周期以及细胞骨架和膜系统在时间和空间上的协调作用,以实现子代细胞的分离。为了剖析胞质分裂机制,对所涉及蛋白质的完整目录进行分类以及使用小分子工具通过严格的时间控制来特异性抑制它们将是有用的。通过基于细胞的筛选发现活性小分子需要困难的步骤来确定其目标。我们在果蝇细胞中进行了并行的化学遗传和全基因组RNA干扰筛选,确定了50种胞质分裂的小分子抑制剂和214种对胞质分裂重要的基因,包括Aurora B途径(Borr)中的一种新蛋白质。通过比较小分子和RNAi表型,我们确定了一种抑制Aurora B激酶途径的小分子。我们的蛋白质清单为系统剖析胞质分裂提供了一个起点,这个方向也将因为我们已经发现了多种多样的小分子抑制剂而大大促进。我们发现Aurora B通路的解剖结构将特别受益,在该处我们发现了一个新基因和一种特定的小分子抑制剂。我们的研究表明,平行RNA干扰和小分子筛选是识别活性小分子及其靶途径的通用方法。

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