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首页> 外文期刊>Molecular and Cellular Biology >Wortmannin inactivates phosphoinositide 3-kinase by covalent modification of Lys-802, a residue involved in the phosphate transfer reaction.
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Wortmannin inactivates phosphoinositide 3-kinase by covalent modification of Lys-802, a residue involved in the phosphate transfer reaction.

机译:Wortmannin通过共价修饰Lys-802(参与磷酸转移反应的残基)使磷酸肌醇3-激酶失活。

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摘要

Wortmannin at nanomolar concentrations is a potent and specific inhibitor of phosphoinositide (PI) 3-kinase and has been used extensively to demonstrate the role of this enzyme in diverse signal transduction processes. At higher concentrations, wortmannin inhibits the ataxia telangiectasia gene (ATM)-related DNA-dependent protein kinase (DNA-PKcs). We report here the identification of the site of interaction of wortmannin on the catalytic subunit of PI 3-kinase, p110alpha. At physiological pH (6.5 to 8) wortmannin reacted specifically with p110alpha. Phosphatidylinositol-4,5-diphosphate, ATP, and ATP analogs [adenine and 5'-(4-fluorosulfonylbenzoyl)adenine] competed effectively with wortmannin, while substances containing nucleophilic amino acid side chain functions had no effect at the same concentrations. This suggests that the wortmannin target site is localized in proximity to the substrate-binding site and that residues involved in wortmannin binding have an increased nucleophilicity because of their protein environment. Proteolytic fragments of wortmannin-treated, recombinant p110alpha were mapped with anti-wortmannin and anti-p110alpha peptide antibodies, thus limiting the target site within a 10-kDa fragment, colocalizing with the ATP-binding site. Site-directed mutagenesis of all candidate residues within this region showed that only the conservative Lys-802-to-Arg mutation abolished wortmannin binding. Inhibition of PI 3-kinase occurs, therefore, by the formation of an enamine following the attack of Lys-802 on the furan ring (at C-20) of wortmannin. The Lys-802-to-Arg mutant was also unable to bind FSBA and was catalytically inactive in lipid and protein kinase assays, indicating a crucial role for Lys-802 in the phosphotransfer reaction. In contrast, an Arg-916-to-Pro mutation abolished the catalytic activity whereas covalent wortmannin binding remained intact. Our results provide the basis for the design of novel and specific inhibitors of an enzyme family, including PI kinases and ATM-related genes, that play a central role in many physiological processes.
机译:纳摩尔浓度的Wortmannin是磷酸肌醇(PI)3-激酶的有效和特异性抑制剂,已被广泛用于证明该酶在多种信号转导过程中的作用。在较高浓度下,渥曼青霉素会抑制共济失调性毛细血管扩张基因(ATM)相关的DNA依赖性蛋白激酶(DNA-PKcs)。我们在这里报告鉴定PI 3激酶,p110alpha催化亚基上的渥曼青霉素相互作用的位点。在生理pH(6.5至8)下,渥曼青霉素与p110alpha特异性反应。磷脂酰肌醇-4,5-二磷酸,ATP和ATP类似物[腺嘌呤和5'-(4-氟磺酰基苯甲酰基)腺嘌呤]与渥曼青霉素有效竞争,而含有亲核氨基酸侧链功能的物质在相同浓度下没有作用。这表明渥曼青霉素靶位点定位在底物结合位点附近,并且参与渥曼青霉素结合的残基由于其蛋白质环境而具有增加的亲核性。用抗渥曼青霉素和抗p110alpha肽抗体对渥曼青霉素处理过的重组p110alpha的蛋白水解片段进行定位,从而将目标位点限制在10 kDa片段内,与ATP结合位点共定位。该区域内所有候选残基的定点诱变表明,仅保守的Lys-802-Arg突变消除了渥曼青霉素的结合。因此,在赖氨酸802攻击渥曼青霉素的呋喃环(在C-20处)后形成烯胺,从而抑制了PI 3-激酶。 Lys-802-to-Arg突变体也无法结合FSBA,并且在脂质和蛋白激酶测定中无催化活性,表明Lys-802在磷酸转移反应中起着至关重要的作用。相反,从Arg-916到Pro的突变取消了催化活性,而共价渥曼青霉素的结合保持完整。我们的结果为设计酶家族的新型和特异性抑制剂(包括PI激酶和ATM相关基因)提供了基础,这些抑制剂在许多生理过程中起着核心作用。

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