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首页> 外文期刊>Biochemistry >Isolation of high-affinity peptide antagonists of 14-3-3 proteins by phage display.
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Isolation of high-affinity peptide antagonists of 14-3-3 proteins by phage display.

机译:通过噬菌体展示分离14-3-3蛋白的高亲和力肽拮抗剂。

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The 14-3-3 proteins interact with diverse cellular molecules involved in various signal transduction pathways controlling cell proliferation, transformation, and apoptosis. To aid our investigation of the biological function of 14-3-3 proteins, we have set out to identify high-affinity antagonists. By screening phage display libraries, we have identified a set of peptides which bind 14-3-3 proteins. One of these peptides, termed R18, exhibited a high affinity for different isoforms of 14-3-3 with estimated K(D) values of 7-9 x 10(-)(8) M. Recognition of multiple isoforms of 14-3-3 suggests the targeting of R18 to a structure that is common among 14-3-3 proteins, such as the conserved ligand-binding groove. Indeed, mutations that alter critical residues in the ligand-binding site of 14-3-3 drastically decreased the level of 14-3-3-R18 association. R18 efficiently blocked the binding of 14-3-3 to the kinase Raf-1, a physiological ligand of 14-3-3, and effectively abolished the protective role of 14-3-3 against phosphatase-induced inactivation of Raf-1. The cocrystal structure of R18 in complex with 14-3-3zeta revealed the occupancy of the general binding groove of 14-3-3zeta by R18, explaining the potent inhibitory effect of R18 on 14-3-3-ligand interactions. Such a well-defined peptide will be an effective tool for probing the role of 14-3-3 in various signaling pathways, and may lead to the development of 14-3-3 antagonists with pharmacological applications.
机译:14-3-3蛋白与参与控制细胞增殖,转化和凋亡的各种信号转导途径的各种细胞分子相互作用。为了帮助我们研究14-3-3蛋白的生物学功能,我们着手确定高亲和力拮抗剂。通过筛选噬菌体展示文库,我们鉴定了一组结合14-3-3蛋白的肽。这些肽之一,称为R18,对14-3-3的不同同工型表现出高亲和力,估计K(D)值为7-9 x 10(-)(8)M。识别14-3的多种同工型-3建议将R18靶向14-3-3蛋白中常见的结构,例如保守的配体结合沟。实际上,改变14-3-3配体结合位点的关键残基的突变会大大降低14-3-3-R18缔合的水平。 R18有效地阻止了14-3-3与14-3-3的生理配体激酶Raf-1的结合,并有效地取消了14-3-3对磷酸酶诱导的Raf-1失活的保护作用。 R18与14-3-3zeta的复合物的共晶体结构显示R18占据了14-3-3zeta的一般结合槽,这说明R18对14-3-3-配体相互作用的有效抑制作用。这种定义明确的肽将是探索14-3-3在各种信号传导途径中的作用的有效工具,并且可能导致14-3-3拮抗剂在药理学方面的发展。

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