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首页> 外文期刊>ACS Chemical Biology >Use of Docking Peptides to Design Modular Substrates with High Efficiency for Mitogen-Activated Protein Kinase Extracellular Signal-Regulated Kinase
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Use of Docking Peptides to Design Modular Substrates with High Efficiency for Mitogen-Activated Protein Kinase Extracellular Signal-Regulated Kinase

机译:使用对接肽设计高效的丝裂原活化蛋白激酶细胞外信号调节激酶的模块化底物。

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The mitogen-activated protein kinase extracellular regulated kinase (ERK) plays a key role in the regulation of cellular proliferation. Mutations in the ERK cascade occur in 30% of malignant tumors. Thus understanding how the kinase identifies its cognate substrates as well as monitoring the activity of ERK is central to cancer research and therapeutic development. ERK binds to its protein targets, both downstream substrates and upstream activators, via a binding site distinct from the catalytic site of ERK. The substrate sequences that bind, or dock, to these sites on ERK influence the efficiency of phosphorylation. For this reason, simple peptide substrates containing only phosphorylation sequences typically possess low efficiencies for ERK. Appending short docking peptides derived from full-length protein substrates and activators of ERK to a phosphorylation sequence increased the affinity of ERK for the phosphorylation sequence by as much as 200-fold while only slightly diminishing the maximal velocity of the reaction. The efficiency of the phosphorylation reaction was increased by up to 150-fold, while the specificity of the substrate for ERK was preserved. Simple modular peptide substrates, which can be easily tailored to possess high phosphorylation efficiencies, will enhance our understanding of the regulation of ERK and provide a tool for the development of new kinase assays.
机译:丝裂原活化的蛋白激酶细胞外调节激酶(ERK)在细胞增殖的调节中起着关键作用。 ERK级联中的突变发生在30%的恶性肿瘤中。因此,了解激酶如何识别其同源底物以及监测ERK的活性对于癌症研究和治疗开发至关重要。 ERK通过不同于ERK催化位点的结合位点结合到其蛋白质靶位(下游底物和上游激活剂)。与ERK上这些位点结合或停靠的底物序列影响磷酸化的效率。因此,仅包含磷酸化序列的简单肽底物通常对ERK的效率较低。将衍生自全长蛋白质底物和ERK激活剂的短对接肽附加到磷酸化序列上,可使ERK对磷酸化序列的亲和力增加200倍之多,而仅稍微降低了反应的最大速度。磷酸化反应的效率提高了150倍,同时保留了底物对ERK的特异性。简单的模块化肽底物(可轻松定制以具有高磷酸化效率)将增强我们对ERK调控的理解,并为开发新的激酶测定法提供工具。

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