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Comparative conservation analysis of the human mitotic phosphoproteome.

机译:人类有丝分裂磷酸化蛋白质组的比较保守性分析。

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A key challenge in phosphoproteomic studies is to distinguish functionally relevant phosphorylation sites from potentially 'silent' phosphorylation. Considering that relevant phosphorylation sites are expected to be better conserved during evolution than overall Serine, Threonine and Tyrosine (S/ T/ Y) residues, we asked whether this can be directly demonstrated through statistic analysis, using a large experimental dataset. RESULTS: Analyzing phosphoproteomic data derived from the human mitotic spindle apparatus, we found that 95.2% of 1744 phosphorylation sites are conserved in at least one of six other vertebrate species. Using a new score, termed conservation Z-score (CZ-score), we demonstrate that phosphorylation sites are significantly better conserved than other S/T/Y sites, a conclusion validated from several kinase consensus motifs. Most importantly, phosphorylation sites with experimentally verified biological functions were significantly better conserved than other phosphorylation sites, indicating that analysis utilizing evolutionary conservation may constitute a powerful basis for the development of improved phosphorylation site predictors. CONTACT: malik@biochem.mpg.de SUPPLEMENTARY INFORMATION: Supplementary data are available at Bioinformatics online.
机译:磷酸蛋白质组学研究的关键挑战是将功能相关的磷酸化位点与潜在的“沉默”磷酸化区分开。考虑到预期在进化过程中相关的磷酸化位点比总的丝氨酸,苏氨酸和酪氨酸(S / T / Y)残基更好,我们询问是否可以使用大型实验数据集通过统计分析直接证明这一点。结果:分析来自人类有丝分裂纺锤体设备的磷酸化蛋白质组学数据,我们发现1744个磷酸化位点的95.2%在其他六个脊椎动物物种中至少一个是保守的。使用新的分数,称为保守性Z分数(CZ分数),我们证明了磷酸化位点比其他S / T / Y位点的保守性更好,这一结论已从多个激酶共有基序中得到验证。最重要的是,具有实验验证的生物学功能的磷酸化位点比其他磷酸化位点显着更好的保守性,这表明利用进化保守性进行的分析可能构成开发改良的磷酸化位点预测因子的有力基础。联系人:malik@biochem.mpg.de补充信息:补充数据可从Bioinformatics在线获得。

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