【2h】

Targeting the mutant

机译:瞄准突变体

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摘要

PIK3CA is the most frequently mutated oncogene in cervical cancer, and somatic mutations in the PIK3CA gene result in increased activity of PI3K. In cervical cancer, the E545K mutation in PIK3CA leads to elevated cell proliferation and reduced apoptosis. In the present study, we designed and synthesized a novel pyrrole‐imidazole polyamide‐seco‐CBI conjugate, P3AE5K, to target the PIK3CA gene bearing the E545K mutation, rendered possible by nuclear access and the unique sequence specificity of pyrrole‐imidazole polyamides. P3AE5K interacted with double‐stranded DNA of the coding region containing the E545K mutation. When compared with conventional PI3K inhibitors, P3AE5K demonstrated strong cytotoxicity in E545K‐positive cervical cancer cells at lower concentrations. PIK3CA mutant cells exposed to P3AE5K exhibited reduced expression levels of PIK3CA mRNA and protein, and subsequent apoptotic cell death. Moreover, P3AE5K significantly decreased the tumor growth in mouse xenograft models derived from PIK3CA mutant cells. Overall, the present data strongly suggest that the alkylating pyrrole‐imidazole polyamide P3AE5K should be a promising new drug candidate targeting a constitutively activating mutation of PIK3CA in cervical cancer.
机译:Pik3Ca是宫颈癌中最常突变的癌基因,PIK3CA基因的体细胞突变导致PI3K的活性增加。在宫颈癌中,PIK3CA的E545K突变导致细胞增殖和细胞凋亡降低。在本研究中,我们设计和合成了一种新的吡咯 - 咪唑聚酰胺 - Seco-CBI-Seco-CBI缀合物,P3Ae5K,以靶向携带E545K突变的PIK3CA基因,通过核接入提供可能的吡咯 - 咪唑聚酰胺的独特序列特异性。 p3ae5k与含有E545K突变的编码区的双链DNA相互作用。与常规PI3K抑制剂相比,P3AE5K在较低浓度下表现出E545K阳性宫颈癌细胞的强细胞毒性。暴露于p3ae5k的Pik3CA突变细胞表现出pik3ca mRNA和蛋白质的表达水平,以及随后的凋亡细胞死亡。此外,P3Ae5K显着降低了衍生自PIK3CA突变细胞的小鼠异种移植模型中的肿瘤生长。总的来说,目前的数据强烈表明,烷基化吡咯 - 咪唑聚酰胺P3Ae5K应该是靶向宫颈癌中PIK3CA的组成型激活突变的有前途的新药候选。

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