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Efficient Delivery of Structurally Diverse Protein Cargo into Mammalian Cells by a Bacterial Toxin

机译:通过细菌毒素将结构多样的蛋白货物有效地传递到哺乳动物细胞中

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摘要

Platforms enabling targeted delivery of proteins into cells are needed to fully realize the potential of protein-based therapeutics with intracellular sites-of-action. Bacterial toxins are attractive systems to consider as templates for designing protein transduction systems as they naturally bind and enter specific cells with high efficiency. Here we investigated the capacity of diphtheria toxin to function as an intracellular protein delivery vector. We report that diphtheria toxin delivers an impressive array of passenger proteins spanning a range of sizes, structures, and stabilities into cells in a manner that indicates that they are invisible to the translocation machinery. Further, we show that a-amylase delivered into cells by a detoxified diphtheria toxin chimera digests intracellular glycogen in live cells, providing evidence that delivered cargo is folded, active, and abundant. The efficiency and versatility of diphtheria toxin over existing systems open numerous possibilities for intracellular delivery of bioactive proteins.
机译:需要能够将蛋白质靶向递送到细胞中的平台,以充分实现具有细胞内作用位点的基于蛋白质的治疗剂的潜力。细菌毒素是有吸引力的系统,可以考虑用作设计蛋白质转导系统的模板,因为它们可以自然地结合并高效进入特定细胞。在这里,我们研究了白喉毒素作为细胞内蛋白传递载体的功能。我们报告白喉毒素向细胞内传递了一系列令人印象深刻的过客蛋白,这些蛋白跨越了一系列大小,结构和稳定性,表明它们对转运机制不可见。此外,我们显示通过解毒的白喉毒素嵌合体递送到细胞中的α-淀粉酶消化活细胞中的细胞内糖原,提供了递送的货物折叠,活跃和丰富的证据。白喉毒素相对于现有系统的效率和多功能性为细胞内递送生物活性蛋白打开了许多可能性。

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