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A Biochemical Genomics Screen for Substrates of Ste20p Kinase Enables the In Silico Prediction of Novel Substrates

机译:Ste20p激酶底物的生化基因组学筛选可实现新型底物的计算机模拟预测。

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摘要

The Ste20/PAK family is involved in many cellular processes, including the regulation of actin-based cytoskeletal dynamics and the activation of MAPK signaling pathways. Despite its numerous roles, few of its substrates have been identified. To better characterize the roles of the yeast Ste20p kinase, we developed an in vitro biochemical genomics screen to identify its substrates. When applied to 539 purified yeast proteins, the screen reported 14 targets of Ste20p phosphorylation. We used the data resulting from our screen to build an in silico predictor to identify Ste20p substrates on a proteome-wide basis. Since kinase-substrate specificity is often mediated by additional binding events at sites distal to the phosphorylation site, the predictor uses the presence/absence of multiple sequence motifs to evaluate potential substrates. Statistical validation estimates a threefold improvement in substrate recovery over random predictions, despite the lack of a single dominant motif that can characterize Ste20p phosphorylation. The set of predicted substrates significantly overrepresents elements of the genetic and physical interaction networks surrounding Ste20p, suggesting that some of the predicted substrates are in vivo targets. We validated this combined experimental and computational approach for identifying kinase substrates by confirming the in vitro phosphorylation of polarisome components Bni1p and Bud6p, thus suggesting a mechanism by which Ste20p effects polarized growth.
机译:Ste20 / PAK家族参与许多细胞过程,包括基于肌动蛋白的细胞骨架动力学的调节和MAPK信号通路的激活。尽管其角色众多,但几乎没有发现任何基质。为了更好地表征酵母Ste20p激酶的作用,我们开发了一种体外生化基因组学筛选方法,以鉴定其底物。当应用于539种纯化的酵母蛋白时,该筛选报告了Ste20p磷酸化的14个靶标。我们使用从屏幕上获得的数据来构建计算机模拟预测器,以在整个蛋白质组范围内识别Ste20p底物。由于激酶底物的特异性通常是由磷酸化位点远端的其他结合事件介导的,因此预测因子利用多个序列基序的存在/不存在来评估潜在的底物。尽管缺乏单一的可表征Ste20p磷酸化的显性基序,但统计验证估计底物回收率比随机预测值提高了三倍。预测的底物组显着地代表了Ste20p周围的遗传和物理相互作用网络的元素,表明某些预测的底物是体内靶标。我们通过确认极化体组分Bni1p和Bud6p的体外磷酸化,验证了鉴定激酶底物的组合实验和计算方法,从而提出了Ste20p影响极化生长的机制。

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