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PP2A inactivation is a crucial step in triggering apoptin-induced tumor-selective cell killing

机译:PP2A失活是触发凋亡素诱导的肿瘤选择性细胞杀伤的关键步骤

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摘要

Apoptin (apoptosis-inducing protein) harbors tumor-selective characteristics making it a potential safe and effective anticancer agent. Apoptin becomes phosphorylated and induces apoptosis in a large panel of human tumor but not normal cells. Here, we used an in vitro oncogenic transformation assay to explore minimal cellular factors required for the activation of apoptin. Flag-apoptin was introduced into normal fibroblasts together with the transforming SV40 large T antigen (SV40 LT) and SV40 small t antigen (SV40 ST) antigens. We found that nuclear expression of SV40 ST in normal cells was sufficient to induce phosphorylation of apoptin. Mutational analysis showed that mutations disrupting the binding of ST to protein phosphatase 2A (PP2A) counteracted this effect. Knockdown of the ST-interacting PP2A–B56γ subunit in normal fibroblasts mimicked the effect of nuclear ST expression, resulting in induction of apoptin phosphorylation. The same effect was observed upon downregulation of the PP2A–B56δ subunit, which is targeted by protein kinase A (PKA). Apoptin interacts with the PKA-associating protein BCA3/AKIP1, and inhibition of PKA in tumor cells by treatment with H89 increased the phosphorylation of apoptin, whereas the PKA activator cAMP partially reduced it. We infer that inactivation of PP2A, in particular, of the B56γ and B56δ subunits is a crucial step in triggering apoptin-induced tumor-selective cell death.
机译:Apoptin(凋亡诱导蛋白)具有肿瘤选择性特征,使其成为潜在的安全有效的抗癌剂。细胞凋亡蛋白被磷酸化并诱导大量人类肿瘤而非正常细胞中的凋亡。在这里,我们使用了体外致癌转化试验来探索激活凋亡素所需的最小细胞因子。将Flag-apoptin与转化的SV40大T抗原(SV40 LT)和SV40小t抗原(SV40 ST)抗原一起引入正常成纤维细胞。我们发现SV40 ST在正常细胞中的核表达足以诱导凋亡蛋白的磷酸化。突变分析表明,破坏ST与蛋白磷酸酶2A(PP2A)结合的突变抵消了这种作用。正常成纤维细胞中与ST相互作用的PP2A–B56γ亚基的敲低模仿了ST细胞核表达的作用,从而导致了凋亡素磷酸化的诱导。下调PP2A–B56δ亚基(蛋白激酶A(PKA)靶向)的效果相同。 Apoptin与PKA相关蛋白BCA3 / AKIP1相互作用,通过用H89处理而抑制肿瘤细胞中的PKA会增加Apoptin的磷酸化,而PKA激活剂cAMP会部分降低它。我们推断,PP2A的失活,特别是B56γ和B56δ亚基的失活是触发凋亡素诱导的肿瘤选择性细胞死亡的关键步骤。

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