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Efficient intracellular delivery of a pro-apoptotic peptide with a pH-responsive carrier

机译:带有pH响应载体的促细胞凋亡肽的高效细胞内递送

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A key challenge in developing protein therapeutics or imaging agents that work against cytosolic targets is the intracellular delivery barrier. Here, we show that the pH-responsive, membrane-destabilizing polymer, poly(propylacrylic acid) (PPM), can strongly enhance target cell killing through the intracellular delivery of a functional pro-apoptotic peptide. The Bak BH3 peptide induces apoptosis via antagonization of suppressor targets such as Bcl-2 and Bcl-xL. A genetically-engineered streptavidin that contains an N-terminal TAT peptide sequence was used to optimize the pinocytotic cell uptake of biotinylated BH3 peptide and end-biotinylated PPAA. Fluorescence microscopic analysis of DAPl-stained HeLa cells was used to quantitate apoptosis. Approximately 30% of cells treated with TAT-SA:BH3 complexes revealed morphologically distinct nuclear condensation, a hallmark of apoptosis. The incorporation of biotinylated PPAA had the effect of markedly enhancing the killing effect of BH3 peptides by an additional 55% (p < 0.001) to a total cell killing efficiency of 85%. Caspase-3 activity was up-regulated in a TAT-SA:BH3: PPAA dose-dependent manner. The induction of apoptosis with the TAT-SA:BH3:PPAA complex was abrogated with the L78A BH3 peptide, that had been previously shown to knock-out antagonization activity. The caspase and L78A peptide results demonstrate that the delivered BH3 is indeed working through the biologically relevant apoptosis signaling pathway. These studies establish the ability of PPAA to strongly enhance the intracellular delivery of a functional pro-apoptotic peptide. Together with the PPAA, the TAT-SA adaptor complex could prove useful as a carrier of peptide/protein cargo to cultured cells.
机译:开发对抗细胞溶质靶标的蛋白质治疗剂或显像剂的关键挑战是细胞内传递屏障。在这里,我们表明pH响应,膜不稳定的聚合物,聚(丙基丙烯酸)(PPM),可以通过功能性促凋亡肽的细胞内递送强烈增强靶细胞的杀伤力。 Bak BH3肽通过拮抗抑制靶标Bcl-2和Bcl-xL诱导凋亡。包含N端TAT肽序列的基因工程链霉亲和素用于优化生物素化BH3肽和生物素化末端PPAA的胞吞细胞摄取。 DAP1染色的HeLa细胞的荧光显微镜分析用于定量凋亡。用TAT-SA:BH3复合物处理的细胞中约有30%表现出形态学独特的核浓缩,这是细胞凋亡的标志。掺入生物素化的PPAA具有显着增强BH3肽的杀伤效果的作用,即增加了55%(p <0.001),使总细胞杀伤效率达到了85%。 Caspase-3活性以TAT-SA:BH3:PPAA剂量依赖性方式上调。使用TAT-SA:BH3:PPAA复合物诱导的细胞凋亡已被L78A BH3肽废除,该肽先前已被证明具有拮抗活性。半胱天冬酶和L78A肽的结果表明,递送的BH3确实通过生物学相关的凋亡信号通路起作用。这些研究建立了PPAA强烈增强功能性促凋亡肽在细胞内递送的能力。与PPAA一起,TAT-SA衔接子复合物可被证明可用作培养细胞中肽/蛋白质货物的载体。

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