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Differential Mechanisms of Constitutive Akt/PKB Activation and Its Influence on Gene Expression in Pancreatic Cancer Cells

机译:组成性Akt / PKB激活的差异机制及其对胰腺癌细胞基因表达的影响

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摘要

Activated Akt/protein kinase B transmits oncogenic signals leading to inhibition of apoptosis, cellular proliferation, and tolerance to hypoxia. Presently, mutational inactivation of PTEN and activation of Ras are considered to be the major causes of Akt activation. Here we report differential mechanisms of constitutive Akt activation in 4 human pancreatic cancer cell lines (KMP‐3, KMP‐4, PCI‐66, and PCI‐68). These 4 cell lines displayed phosphorylation and functional activation of Akt both in the presence and absence of serum, while three control cell lines (PCI‐79, KMP‐8, and PSN‐1) did so only in the presence of serum in culture. All the 7 cell lines harbored K‐Ras activated by mutations at codon 12 resulting in MAP kinase kinase (MEK1/2) phosphorylation, and all except one (KMP‐8) had p53 mutations, indicating that these mutations are not sufficient for constitutive Akt activation. KMP‐3 and KMP‐4 had lost PTEN function owing to loss of expression or a mutation, but PCI‐66 and PCI‐68 retained wild‐type PTEN. Phosphorylation of Akt was inhibited by the phosphatidylinositol‐3‐kinase (PI3K) inhibitor and the tyrosine kinase inhibitor genistein in KMP‐3 and KMP‐4 cells, indicating that upstream signals are required for Akt activation in these two cell lines. In contrast, neither nor genistein inhibited Akt activation in PCI‐66 and PCI‐68 cells, indicating the involvement of another unknown mechanism of Akt activation independent of PI3K‐mediated signaling to Akt. Irrespective of the differential mechanisms, the 4 cell lines showed similar mRNA expression patterns of 49 genes assessed by cDNA array as compared to the 3 cell lines without Akt activation, suggesting that the mechanisms have the same consequences on the downstream signaling of the constitutive Akt activation.
机译:活化的Akt /蛋白激酶B传递致癌信号,导致凋亡抑制,细胞增殖和对缺氧的耐受性。目前,PTEN的突变失活和Ras的激活被认为是Akt激活的主要原因。在这里,我们报告了四种人类胰腺癌细胞系(KMP-3,KMP-4,PCI-66和PCI-68)中Akt组成性激活的不同机制。这4个细胞系在存在和不存在血清的情况下均显示Akt的磷酸化和功能激活,而三个对照细胞系(PCI-79,KMP-8和PSN-1)仅在培养物中存在血清时才显示。所有7个细胞系都具有K-Ras,并通过12位密码子的突变激活,从而导致MAP激酶激酶(MEK1 / 2)磷酸化,除1个(KMP-8)之外的所有细胞都具有p53突变,表明这些突变不足以构成Akt激活。 KMP-3和KMP-4由于表达缺失或突变而丧失了PTEN功能,但PCI-66和PCI-68保留了野生型PTEN。在KMP-3和KMP-4细胞中,磷脂酰肌醇3-激酶(PI3K)抑制剂和酪氨酸激酶抑制剂染料木黄酮抑制了Akt的磷酸化,表明这两个细胞系中Akt激活需要上游信号。相比之下,金雀异黄素也不能抑制PCI-66和PCI-68细胞中的Akt激活,表明与PI3K介导的Akt信号传导无关的另一种未知的Akt激活机制。不管采用何种差异机制,与不使用Akt激活的3种细胞系相比,通过cDNA阵列评估的4种细胞系均显示了49个基因的相似的mRNA表达模式,这表明该机制对组成性Akt激活的下游信号传导具有相同的影响。

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