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首页> 外文期刊>Molecular and Cellular Biology >Regulation of the p85/p110 Phosphatidylinositol 3′-Kinase: Stabilization and Inhibition of the p110α Catalytic Subunit by the p85 Regulatory Subunit
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Regulation of the p85/p110 Phosphatidylinositol 3′-Kinase: Stabilization and Inhibition of the p110α Catalytic Subunit by the p85 Regulatory Subunit

机译:调节p85 / p110磷脂酰肌醇3'-激酶:通过p85调节亚基稳定和抑制p110α催化亚基

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We propose a novel model for the regulation of the p85/p110α phosphatidylinositol 3′-kinase. In insect cells, the p110α catalytic subunit is active as a monomer but its activity is decreased by coexpression with the p85 regulatory subunit. Similarly, the lipid kinase activity of recombinant glutathione S-transferase (GST)-p110α is reduced by 65 to 85% upon in vitro reconstitution with p85. Incubation of p110α/p85 dimers with phosphotyrosyl peptides restored activity, but only to the level of monomeric p110α. These data show that the binding of phosphoproteins to the SH2 domains of p85 activates the p85/p110α dimers by inducing a transition from an inhibited to a disinhibited state. In contrast, monomeric p110 had little activity in HEK 293T cells, and its activity was increased 15- to 20-fold by coexpression with p85. However, this apparent requirement for p85 was eliminated by the addition of a bulky tag to the N terminus of p110α or by the growth of the HEK 293T cells at 30°C. These nonspecific interventions mimicked the effects of p85 on p110α, suggesting that the regulatory subunit acts by stabilizing the overall conformation of the catalytic subunit rather than by inducing a specific activated conformation. This stabilization was directly demonstrated in metabolically labeled HEK 293T cells, in which p85 increased the half-life of p110. Furthermore, p85 protected p110 from thermal inactivation in vitro. Importantly, when we examined the effect of p85 on GST-p110α in mammalian cells at 30°C, culture conditions that stabilize the catalytic subunit and that are similar to the conditions used for insect cells, we found that p85 inhibited p110α. Thus, we have experimentally distinguished two effects of p85 on p110α: conformational stabilization of the catalytic subunit and inhibition of its lipid kinase activity. Our data reconcile the apparent conflict between previous studies of insect versus mammalian cells and show that p110α is both stabilized and inhibited by dimerization with p85.
机译:我们提出了一种新型模型,用于调节p85 /p110α磷脂酰肌醇3'-激酶。在昆虫细胞中,p110α催化亚基具有单体活性,但与p85调节亚基共表达会降低其活性。同样,在体外重组p85后,重组谷胱甘肽 S -转移酶(GST)-p110α的脂质激酶活性降低了65%至85%。用磷酸酪氨酰肽孵育p110α/ p85二聚体可恢复活性,但仅恢复到单体p110α的水平。这些数据表明磷蛋白与p85的SH2结构域的结合通过诱导从抑制状态到抑制状态的转变激活了p85 /p110α二聚体。相反,单体p110在HEK 293T细胞中几乎没有活性,通过与p85共表达,其活性增加了15到20倍。但是,通过在p110α的N末端添加一个笨重的标签或HEK 293T细胞在30°C的生长,消除了对p85的明显需求。这些非特异性干预模仿了p85对p110α的作用,表明调节亚基的作用是稳定催化亚基的整体构象,而不是诱导特异性活化的构象。这种稳定作用直接在代谢标记的HEK 293T细胞中得到证实,其中p85延长了p110的半衰期。此外,p85可保护p110免受体外热灭活。重要的是,当我们在30°C考察哺乳动物细胞中p85对GST-p110α的影响时,该条件稳定了催化亚基,并且类似于昆虫细胞所用的条件,我们发现p85抑制了p110α。因此,我们已经从实验上区分了p85对p110α的两种作用:催化亚基的构象稳定和其脂质激酶活性的抑制。我们的数据调和了以前的昆虫细胞与哺乳动物细胞研究之间的明显矛盾,并表明p110α被p85的二聚化既稳定又受到抑制。

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