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Enhancing Specific Disruption of Intracellular Protein Complexes by Hydrocarbon Stapled Peptides Using Lipid Based Delivery

机译:使用基于脂质的递送增强烃类钉合肽对细胞内蛋白质复合物的特异性破坏

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摘要

Linear peptides can mimic and disrupt protein-protein interactions involved in critical cell signaling pathways. Such peptides however are usually protease sensitive and unable to engage with intracellular targets due to lack of membrane permeability. Peptide stapling has been proposed to circumvent these limitations but recent data has suggested that this method does not universally solve the problem of cell entry and can lead to molecules with off target cell lytic properties. To address these issues a library of stapled peptides was synthesized and screened to identify compounds that bound Mdm2 and activated cellular p53. A lead peptide was identified that activated intracellular p53 with negligible nonspecific cytotoxicity, however it still bound serum avidly and only showed a marginal improvement in cellular potency. These hurdles were overcome by successfully identifying a pyridinium-based cationic lipid formulation, which significantly improved the activity of the stapled peptide in a p53 reporter cell line, principally through increased vesicular escape. These studies under score that stapled peptides, which are cell permeable and target specific, can be identified with rigorous experimental design and that these properties can be improved through use with lipid based formulations. This work should facilitate the clinical translation of stapled peptides.
机译:线性肽可以模拟并破坏关键细胞信号通路中涉及的蛋白质-蛋白质相互作用。然而,由于缺乏膜通透性,这样的肽通常对蛋白酶敏感并且不能与细胞内靶标结合。已经提出肽装订来规避这些限制,但是最近的数据表明该方法不能普遍解决细胞进入的问题,并且可以导致具有靶细胞裂解特性的分子。为了解决这些问题,合成并筛选了固定肽库,以鉴定结合Mdm2和激活细胞p53的化合物。鉴定出一种先导肽,其以微不足道的非特异性细胞毒性激活了细胞内p53,但是它仍然狂热地结合血清并且仅显示出细胞效力的少量改善。通过成功地鉴定出基于吡啶鎓的阳离子脂质制剂可以克服这些障碍,该制剂主要通过增加囊泡逸出来显着提高p53报告基因细胞系中固定肽的活性。这些研究的结果是,可以通过严格的实验设计来鉴定具有细胞渗透性和靶标特异性的固定肽,并且可以通过使用基于脂质的制剂来改善这些特性。这项工作应有助于固定肽的临床翻译。

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