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Engineering of vault nanocapsules with enzymatic and fluorescent properties

机译:具有酶和荧光特性的金库纳米胶囊的工程设计

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One of the central issues facing the emerging field of nanotech-nology is cellular compatibility. Nanoparticles have been proposed for diagnostic and therapeutic applications, including drug delivery, gene therapy, biological sensors, and controlled catalysis. Viruses, liposomes, peptides, and synthetic and natural polymers have been engineered for these applications, yet significant limitations continue to prevent their use. Avoidance of the body's natural immune system, lack of targeting specificity, and the inability to control packaging and release are remaining obstacles. We have explored the use of a naturally occurring cellular nano-particle known as the vault, which is named for its morphology with multiple arches reminiscent of cathedral ceilings. Vaults are 13-MDa ribonucleoprotein particles with an internal cavity large enough to sequester hundreds of proteins. Here, we report a strategy to target and sequester biologically active materials within the vault cavity. Attachment of a vault-targeting peptide to two proteins, luciferase and a variant of GFP, resulted in their sequestration within the vault cavity. The targeted proteins confer enzymatic and fluorescent properties on the recombinant vaults, both of which can be detected by their emission of light. The modified vaults are compatible with living cells. The ability to engineer vault particles with designed properties and functionalities represents an important step toward development of a biocompatible nanocapsule.
机译:纳米技术新兴领域面临的核心问题之一是细胞相容性。已经提出了用于诊断和治疗应用的纳米颗粒,包括药物递送,基因治疗,生物传感器和受控催化。病毒,脂质体,肽以及合成和天然聚合物已经针对这些应用进行了工程设计,但是仍然存在严重的局限性阻止了它们的使用。避免人体的天然免疫系统,缺乏靶向特异性以及无法控制包装和释放仍然是障碍。我们已经探索了使用天然存在的细胞纳米粒子(称为穹顶)的用途,该穹顶因其形态而得名,具有多个拱形结构,让人联想到大教堂的天花板。避难所是13-MDa核糖核蛋白颗粒,其内部腔体足以隔离数百种蛋白质。在这里,我们报告了一种针对和隔离穹cavity腔内生物活性物质的策略。穹v靶向肽与两种蛋白(萤光素酶和GFP变体)的连接导致其螯合在穹cavity腔内。靶向蛋白质赋予重组穹顶以酶促和荧光特性,这两者都可以通过其发光来检测。修改后的金库与活细胞兼容。工程具有设计的特性和功能的穹顶粒子的能力代表了开发生物相容性纳米胶囊的重要一步。

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