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Regulation of protein kinase B (PKB/Akt) by DNA-dependent protein kinase (DNA-PK) under physiological conditions

机译:在生理条件下通过DNa依赖性蛋白激酶(DNa-pK)调节蛋白激酶B(pKB / akt)

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摘要

The serine/threonine protein kinase B (PKB/Akt) is a downstream effector of phosphatidylinositol 3-kinase (PI3K) and a major regulator of a variety of cellular processes, including metabolism, transcription, survival, proliferation, and growth. PKB is activated by several stimuli, including hormones, growth factors, cytokines and, as recently reported, also by DNA damage. Activation of PKB requires phosphorylation at two key regulatory sites: Thr308 and Ser473 (of PKBa). Phosphorylation by 3-phosphoinositide-dependent kinase-1 (PDK1) occurs on Thr308 in the activation loop of PKB. The phosphorylation on Ser473 within a C-terminal hydrophobic motif leads to full activation of PKB and mediated by two members of the PI3K-related kinase (PIKK) family, mTOR/rictor complex (mTORC2) or DNA-dependent protein kinase (DNA-PK) in a stimulus specific manner. Insulin or growth factor induced PKB Ser473 phosphorylation is regulated by mTORC2. In contrast, DNA damage-induced phosphorylation of PKB Ser473 is mediated by DNA-PK. udThe present study made use of genetically modified mouse models to investigate PKB regulation by DNA-PK, as phosphorylation of Ser473 may be stimulus-, signalling pathway- and/or cell type-specific. In this study, we investigated the role of DNA-PK in basal, insulin-induced, and DNA damage-induced phosphorylation of PKB Ser473 under physiological conditions. We report that DNA-PK phosphorylated PKB on Ser473 upon DNA damage induced by γ-irradiation in vivo. In contrast, DNA-PK was dispensable for insulin and growth factor-induced PKB activation. Interestingly, analysis of basal PKB Ser473 phosphorylation in DNA-PKcs−/− mice showed tissue-specific deregulation of the PKB/FoxO pathway. In particular, we provide evidence that persistent PKB hyperactivity in the thymus apparently contributes to spontaneous tumourigenesis in DNA-PKcs−/− mice. Lymphomagenesis could be prevented by the deletion of PKBa and implies deregulation of PKB in DNA-PKcs−/− thymi.udDeregulation of PKB is implicated in various types of cancer and PI3K/PKB pathway is one of the most deregulated pathways in human malignancies. Therefore PI3K/PKB pathway is a major focus of current efforts for the treatment of cancer. In the second part of the study we made use of differential activation of PKB by upstream kinases in response to specific stimuli as a tool to dissect the mode of action of a small molecule inhibitor BBD130.
机译:丝氨酸/苏氨酸蛋白激酶B(PKB / Akt)是磷脂酰肌醇3-激酶(PI3K)的下游效应子,是多种细胞过程的主要调节剂,包括代谢,转录,存活,增殖和生长。 PKB被多种刺激激活,包括激素,生长因子,细胞因子,以及最近受到DNA损伤的刺激。 PKB的激活需要两个关键调控位点的磷酸化:Thr308和Ser473(PKBa)。 3-磷酸​​肌醇依赖性激酶-1(PDK1)的磷酸化发生在PKB激活环中的Thr308上。 C端疏水基序中Ser473上的磷酸化导致PKB完全激活,并由PI3K相关激酶(PIKK)家族的两个成员,mTOR / rictor复合物(mTORC2)或DNA依赖性蛋白激酶(DNA-PK)介导)以刺激的方式。胰岛素或生长因子诱导的PKB Ser473磷酸化受mTORC2调控。相反,DNA损伤诱导的PKB Ser473磷酸化由DNA-PK介导。 ud本研究利用转基因小鼠模型研究了DNA-PK对PKB的调控,因为Ser473的磷酸化可能是刺激,信号通路和/或细胞类型特异性的。在这项研究中,我们调查了在生理条件下DNA-PK在基础,胰岛素诱导和DNA损伤诱导的PKB Ser473磷酸化中的作用。我们报告说DNA PK磷酸化Ser473上的γ射线在体内诱导DNA损伤后的PKB。相反,DNA-PK对于胰岛素和生长因子诱导的PKB激活是必不可少的。有趣的是,对DNA-PKcs-/-小鼠中基础PKB Ser473磷酸化的分析显示了PKB / FoxO途径的组织特异性失调。特别是,我们提供的证据表明,胸腺中持久性PKB过度活跃显然促进了DNA-PKcs-/-小鼠的自发肿瘤发生。 PKBa的缺失可以预防淋巴瘤的发生,这意味着DNA-PKcs-/-胸腺中PKB的失调。 udPKB失调与多种类型的癌症有关,PI3K / PKB途径是人类恶性肿瘤中最失控的途径之一。因此,PI3K / PKB途径是当前用于治疗癌症的努力的主要焦点。在研究的第二部分中,我们利用上游激酶响应特定刺激而对PKB进行差异激活,以此作为分析小分子抑制剂BBD130作用方式的工具。

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