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Kinase peptide specificity: Improved determination and relevance to protein phosphorylation

机译:激酶肽特异性:改进的测定和与蛋白质磷酸化的相关性

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Specificity of phosphorylation is critical to signal transduction. Recent emphasis on colocalization of substrate and kinase has eclipsed emphasis on peptide specificity, i.e., kinase preference for particular amino acids surrounding the phosphorylation site. We describe an approach to determining peptide specificity by using positional scanning of biotinylated oriented peptide libraries and insights emerging from those determinations. We accurately determine preference (or disfavor) for residues at a given substrate position (such as P+2) by comparison of in vitro phosphorylation of peptide libraries differing by a single residue at that position. By analysis of all positions near the phosphorylation site, position-specific scoring matrices are generated and used both to understand the basis of specificity and to predict phosphorylation. PKC-delta and -zeta predictions have been validated rigorously by comparisons with measured phosphorylation. The results demonstrate specificity and sensitivity (80-90%) much better than the previous predictive method. These predictions can be accessed at http://mpr.nci.nih.gov. The accuracy of the specificity determination allows identification of an important difference in peptide specificity between these closely related kinases; Ile/Leu at the P-1 position is disfavored by PKC-zeta but not PKC-delta. Our findings and visual representation of peptide specificity highlight the importance of disfavored residues. Finally, analysis of 124 experimentally determined PKC sites from the literature demonstrates a very strong role of peptide specificity in many of those sites. Thus, position-specific scoring matrices generated by this method provide a foundation for quantitative analyses of kinase specificity and improved predictions of previously determined physiologically relevant phosphorylation sites.
机译:磷酸化的特异性对于信号转导至关重要。最近对底物和激酶的共定位的强调已经忽略了对肽特异性的强调,即,激酶对磷酸化位点周围的特定氨基酸的偏好。我们描述了一种通过使用生物素化的定向肽库的位置扫描和从那些确定中得出的见识来确定肽特异性的方法。我们通过比较不同肽库在该位置上的单个残基的体外磷酸化,准确确定了给定底物位置(例如P + 2)上残基的偏好(或否定)。通过分析磷酸化位点附近的所有位置,可以生成特定位置的评分矩阵,并用于了解特异性基础和预测磷酸化。通过与测得的磷酸化进行比较,已严格验证了PKC-delta和-zeta的预测。结果表明特异性和敏感性(80-90%)比以前的预测方法好得多。这些预测可以在http://mpr.nci.nih.gov上访问。特异性测定的准确性使得可以鉴定这些密切相关的激酶之间肽特异性的重要差异。 P-1位置的Ile / Leu受PKC-zeta不利,但不受PKC-delta不利。我们的发现和肽特异性的视觉表示突出了残基的重要性。最后,对来自文献的124个实验确定的PKC位点的分析表明,在许多位点中,肽特异性具有非常强的作用。因此,通过这种方法生成的位置特异性评分矩阵为激酶特异性的定量分析和对先前确定的生理相关磷酸化位点的改进预测提供了基础。

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