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Protein kinases display minimal interpositional dependence on substrate sequence: potential implications for the evolution of signalling networks

机译:蛋白激酶对底物序列的干扰最小:对信号网络进化的潜在影响

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摘要

Characterization of in vitro substrates of protein kinases by peptide library screening provides a wealth of information on the substrate specificity of kinases for amino acids at particular positions relative to the site of phosphorylation, but provides no information concerning interdependence among positions. High-throughput techniques have recently made it feasible to identify large numbers of in vivo kinase substrates. We used data from experiments on the kinases ATM/ATR and CDK1, and curated CK2 substrates to evaluate the prevalence of interactions between substrate positions within a motif and the utility of these interactions in predicting kinase substrates. Among these data, evidence of interpositional sequence dependencies is strikingly rare, and what dependency exists does little to aid in the prediction of novel kinase substrates. Significant increases in the ability of models to predict kinase–substrate specificity beyond position-independent models must come largely from inclusion of elements of biological and cellular context, rather than further analysis of substrate sequences alone. Our results suggest that, evolutionarily, kinase substrate fitness exists in a smooth energetic landscape. Taken with results from others indicating that phosphopeptide-binding domains do exhibit interpositional dependence, our data suggest that incorporation of new substrate molecules into phospho-signalling networks may be rate-limited by the evolution of suitability for binding by phosphopeptide-binding domains.
机译:通过肽库筛选对蛋白激酶的体外底物进行表征,可提供有关激酶相对于磷酸化位点特定位置的氨基酸底物特异性的大量信息,但不提供有关位置间相互依赖性的信息。最近,高通量技术使鉴定大量体内激酶底物变得可行。我们使用来自激酶ATM / ATR和CDK1的实验数据,以及精选的CK2底物来评估基序内底物位置之间相互作用的普遍性以及这些相互作用在预测激酶底物中的效用。在这些数据中,间插序列依赖性的证据极为罕见,并且存在何种依赖性对预测新型激酶底物几乎没有帮助。除了位置独立的模型之外,模型预测激酶-底物特异性的能力的显着提高必须很大程度上来自于生物学和细胞环境因素的纳入,而不仅仅是对底物序列的进一步分析。我们的研究结果表明,从进化上看,激酶底物适应性存在于光滑的能量环境中。从其他结果表明磷酸肽结合域确实表现出中介依赖性,我们的数据表明,将新的底物分子掺入磷酸信号网络可能受到磷酸肽结合域结合适应性进化的速率限制。

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