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New Insights into Protein Kinase B/Akt Signaling: Role of Localized Akt Activation and Compartment-Specific Target Proteins for the Cellular Radiation Response

机译:蛋白激酶B / Akt信号传导的新见解:本地化的Akt激活和针对细胞辐射反应的隔室特异靶蛋白的作用

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摘要

Genetic alterations driving aberrant activation of the survival kinase Protein Kinase B (Akt) are observed with high frequency during malignant transformation and cancer progression. Oncogenic gene mutations coding for the upstream regulators or Akt, e.g., growth factor receptors, RAS and phosphatidylinositol-3-kinase (PI3K), or for one of the three Akt isoforms as well as loss of the tumor suppressor Phosphatase and Tensin Homolog on Chromosome Ten (PTEN) lead to constitutive activation of Akt. By activating Akt, these genetic alterations not only promote growth, proliferation and malignant behavior of cancer cells by phosphorylation of various downstream signaling molecules and signaling nodes but can also contribute to chemo- and radioresistance in many types of tumors. Here we review current knowledge on the mechanisms dictating Akt’s activation and target selection including the involvement of miRNAs and with focus on compartmentalization of the signaling network. Moreover, we discuss recent advances in the cross-talk with DNA damage response highlighting nuclear Akt target proteins with potential involvement in the regulation of DNA double strand break repair.
机译:在恶性转化和癌症进展过程中,高频率观察到遗传变异驱动生存激酶蛋白激酶B(Akt)异常激活。编码上游调节剂或Akt的致癌基因突变,例如生长因子受体,RAS和磷脂酰肌醇3-激酶(PI3K),或三种Akt亚型之一,以及肿瘤抑制蛋白磷酸酶和张力蛋白同源物在染色体上的缺失十(PTEN)导致Akt的组成型激活。通过激活Akt,这些遗传改变不仅通过各种下游信号分子和信号节点的磷酸化促进癌细胞的生长,增殖和恶性行为,而且还可以促进许多类型肿瘤的化学耐药和放射耐药。在这里,我们将回顾有关指示Akt激活和靶点选择的机制的最新知识,包括miRNA的参与以及侧重于信号网络的分隔。此外,我们讨论了与DNA损伤反应的相声的最新进展,突出了核Akt目标蛋白与DNA双链断裂修复调控的潜在关系。

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