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首页> 外文期刊>Molecular and Cellular Biology >The principal rapamycin-sensitive p70(s6k) phosphorylation sites, T-229 and T-389, are differentially regulated by rapamycin-insensitive kinase kinases.
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The principal rapamycin-sensitive p70(s6k) phosphorylation sites, T-229 and T-389, are differentially regulated by rapamycin-insensitive kinase kinases.

机译:雷帕霉素不敏感的激酶激酶对雷帕霉素敏感的主要p70(s6k)磷酸化位点T-229和T-389进行差异调节。

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Mitogen-induced activation of p70(s6k) is associated with the phosphorylation of specific sites which are negatively affected by the immunosuppressant rapamycin, the fungal metabolite wortmannin, and the methylxanthine SQ20006. Recent reports have focused on the role of the amino terminus of the p85(s6k) isoform in mediating kinase activity, with the observation that amino-terminal truncation mutants are activated in the presence of rapamycin while retaining their sensitivity to wortmannin. Here we show that the effects of previously described amino- and carboxy-terminal truncations on kinase activity are ultimately reflected in the phosphorylation state of the enzyme. Mutation of the principal rapamycin-targeted phosphorylation site, T-389, to an acidic residue generates a form of the kinase which is as resistant to wortmannin or SQ20006 as it is to rapamycin, consistent with the previous observation that T-389 was a common target of all three inhibitors. Truncation of the first 54 residues of the amino terminus blocks the serum-induced phosphorylation of three rapamycin-sensitive sites, T-229 in the activation loop and T-389 and S-404 in the linker region. This correlates with a severe reduction in the ability of the kinase to be activated by serum. However, loss of mitogen activation conferred by the removal of the amino terminus is reversed by additional truncation of the carboxy-terminal domain, with the resulting mutant demonstrating phosphorylation of the remaining two rapamycin-sensitive sites, T-229 and T-389. In this double-truncation mutant, phosphorylation of T-229 occurs in the basal state, whereas mitogen stimulation is required to induce acute upregulation of T-389 phosphorylation. The phosphorylation of both sites proceeds unimpaired in the presence of rapamycin, indicating that the kinases responsible for the phosphorylation of these sites are not inhibited by the macrolide. In contrast, activation of the double-truncation mutant is blocked in the presence of wortmannin or SQ20006, and these agents completely block the phosphorylation of T-389 while having only a marginal effect on T-229 phosphorylation. When the T-389 site is mutated to an acidic residue in the double-truncation background, the activation of the resulting mutant is insensitive to the wortmannin and SQ20006 block, but interestingly, the mutant is activated to a significantly greater level than a control in the presence of rapamycin. These data are consistent with the hypothesis that T-389 is the principal regulatory phosphorylation site, which, in combination with hyperphosphorylation of the autoinhibitory domain S/TP sites, is acutely regulated by external effectors, whereas T-229 phosphorylation is regulated primarily by internal mechanisms.
机译:丝裂原诱导的p70(s6k)激活与特定位点的磷酸化有关,这些位点受到免疫抑制剂雷帕霉素,真菌代谢产物渥曼青霉素和甲基黄嘌呤SQ20006的负面影响。最近的报道集中于p85(s6k)亚型的氨基末端在介导激酶活性中的作用,并观察到在雷帕霉素存在下氨基末端截短突变体被激活,同时保留了它们对渥曼青霉素的敏感性。在这里,我们表明先前描述的氨基和羧基末端截短对激酶活性的影响最终反映在酶的磷酸化状态。将雷帕霉素靶向的主要磷酸化位点T-389突变为酸性残基会产生一种形式的激酶,该酶对渥曼青霉素或SQ20006的抗性与对雷帕霉素的抗性一样,这与以前的观察结果一致,即T-389是常见的所有三种抑制剂的目标。截断氨基末端的前54个残基可阻断血清对三个雷帕霉素敏感位点(激活环中的T-229和接头区域中的T-389和S-404)的血清诱导的磷酸化。这与激酶被血清激活的能力的严重降低有关。但是,通过进一步截短羧基末端结构域,可以消除由于去除氨基末端而导致的有丝分裂原活化的丧失,所得突变体表明剩余的两个雷帕霉素敏感位点T-229和T-389磷酸化。在这种双重截断突变体中,T-229的磷酸化发生在基础状态,而有丝分裂原刺激需要诱导T-389磷酸化的急性上调。在雷帕霉素的存在下,两个位点的磷酸化都没有受到损害,这表明负责这些位点磷酸化的激酶不受大环内酯的抑制。相反,在渥曼青霉素或SQ20006的存在下,双截短突变体的激活被阻断,这些试剂完全阻断了T-389的磷酸化,而对T-229的磷酸化仅具有边际作用。当T-389位点在双截断背景中突变为酸性残基时,所得突变体的激活对渥曼青霉素和SQ20006嵌段不敏感,但有趣的是,该突变体的激活程度明显高于对照中的水平。雷帕霉素的存在。这些数据与以下假设相吻合:T-389是主要的调控磷酸化位点,其与自动抑制域S / TP位点的过度磷酸化结合,由外部效应子急性调控,而T-229磷酸化主要由内部效应子调控机制。

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