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Chemical genomic profiling to identify intracellular targets of a multiplex kinase inhibitor

机译:化学基因组分析以鉴定多重激酶抑制剂的细胞内靶标

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The identification of the kinase or kinases targeted by protein kinase inhibitors is a critical challenge in validating their use as therapeutic agents or molecular probes. Here, to address this problem, we describe a chemical genomics strategy that uses a direct comparison between microarray transcriptional signatures elicited by an inhibitor of unknown specificity and those elicited by highly specific pharmacological inhibition of engineered candidate kinase targets. By using this approach, we have identified two cyclin-dependent kinases, Cdk1 and Pho85, as the targets of the inhibitor GW400426 in Saccharomyces cerevisiae. We demonstrate that simultaneous inhibition of Cdk1 and Pho85, and not inhibition of either kinase alone, by GW400426 controls the expression of specific transcripts involved in polarized cell growth, thus revealing a cellular process that is uniquely sensitive to the multiplex inhibition of these two kinases. Our results suggest that the cellular responses induced by multiplex protein kinase inhibitors may be an emergent property that cannot be understood fully by considering only the sum of individual inhibitor-kinase interactions.
机译:蛋白激酶抑制剂靶向的一种或多种激酶的鉴定是验证其用作治疗剂或分子探针的关键挑战。在这里,为了解决这个问题,我们描述了一种化学基因组学策略,该策略使用在特异性未知的抑制剂引起的微阵列转录信号与对工程候选激酶靶点的高度特异性药理作用引起的微阵列转录信号之间进行直接比较。通过使用这种方法,我们已经确定了两个细胞周期蛋白依赖性激酶Cdk1和Pho85,作为酿酒酵母中GW400426抑制剂的靶标。我们证明,GW400426对Cdk1和Pho85的同时抑制,而不是对任一激酶的单独抑制,控制着参与极化细胞生长的特定转录物的表达,从而揭示了对这两种激酶的多重抑制独特敏感的细胞过程。我们的结果表明,由多重蛋白激酶抑制剂诱导的细胞应答可能是一种新兴的特性,仅考虑单个抑制剂-激酶相互作用的总和可能无法完全理解。

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