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体外比较分析人 SRC 家族激酶底物特异性。

Comparative analysis of human SRC-family kinase substrate specificity in vitro.

机构信息

Japan Biological Informatics Consortium, Aomi, Koto-ku, Tokyo 135-8073, Japan.

出版信息

J Proteome Res. 2010 Nov 5;9(11):5982-93. doi: 10.1021/pr100773t. Epub 2010 Oct 13.

Abstract

Src family kinases (SFKs) are the earliest known family of tyrosine kinases and are widely thought to play essential roles in cellular signal transduction. Although numerous functional analyses have been performed, no study has analyzed the specificity of all SFKs on an equal platform. To gain a better understanding of SFK phosphorylation, we designed a high-throughput in vitro kinase assay on the subproteome scale using surface plasmon resonance. We reacted each of the 11 human SFKs with 519 substrate proteins, and significant phosphorylation was detected in 33.6% (1921) of the total 5709 kinase-substrate combinations. A large number of novel phosphorylations were included among them. Many substrates were shown to be phosphorylated by multiple SFKs, which might reflect functional complementarity of SFKs. Clustering analysis of phosphorylation results grouped substrates into 10 categories, while the similarity of SFK catalytic specificity exhibited no significant correlation with that of amino acid sequences. In silico predictions of SRC-specific phosphorylation sites were not consistent with experimental results, implying some unknown SRC recognition modes. In an attempt to find biologically meaningful novel substrates, phosphorylation data were integrated with annotation data. The extensive in vitro data obtained in this study would provide valuable clues for further understanding SFK-mediated signal transduction.

摘要

Src 家族激酶 (SFKs) 是最早被发现的酪氨酸激酶家族,被广泛认为在细胞信号转导中发挥着重要作用。尽管已经进行了大量的功能分析,但没有一项研究在同等平台上分析所有 SFK 的特异性。为了更好地理解 SFK 磷酸化,我们使用表面等离子体共振设计了一个高通量的亚蛋白组规模的体外激酶测定法。我们使 11 种人类 SFK 中的每一种与 519 种底物蛋白反应,在总共 5709 种激酶-底物组合中的 33.6%(1921)中检测到显著的磷酸化。其中包括许多新的磷酸化。许多底物被证明可以被多种 SFK 磷酸化,这可能反映了 SFK 的功能互补性。磷酸化结果的聚类分析将底物分为 10 类,而 SFK 催化特异性的相似性与氨基酸序列的相似性没有显著相关性。SRC 特异性磷酸化位点的计算机预测与实验结果不一致,这意味着 SRC 存在一些未知的识别模式。为了寻找具有生物学意义的新底物,我们将磷酸化数据与注释数据进行了整合。本研究中获得的广泛的体外数据将为进一步理解 SFK 介导的信号转导提供有价值的线索。

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