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Vaults are dynamically unconstrained cytoplasmic nanoparticles capable of half vault exchange

机译:保管库是动态不受约束的能够进行半保管库交换的细胞质纳米颗粒

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摘要

Vaults are naturally occurring ribonucleoprotein particles with an enormous interior volume, large enough to encapsulate hundreds of proteins. They are highly conserved and are present in nearly all eukaryotic cells ranging from 104 to 107 particles per cell. Recombinant vaults can be produced in vitro and engineered to allow cell targeting and protein packaging. These nanometer-sized particles have many desirable characteristics that may give them advantages for use as drug delivery vehicles. Using photoactivatable green fluorescent protein (PAGFP) labeled vaults, we demonstrate that the particles rapidly diffuse throughout the cytoplasm following single pixel photoactivation in live cells. Their in vivo movement remained relatively unchanged despite exposure to a variety of cellular stresses, suggesting that vaults are largely unconstrained in the cytoplasm. Fluorescence resonance energy transfer (FRET) was observed from polyethylene glycol (PEG) fused hybrid cells that expressed either CFP or YFP labeled vaults, indicating that vaults can exchange major vault protein (MVP) subunits in vivo. Investigation into the mechanism of this exchange in vitro using recombinant vaults demonstrated that they were capable of rapidly separating at the particle waist and reassembling back into whole vaults, supporting a half vault exchange mechanism. This data suggests a means whereby vaults can functionally interact with their cellular environment and deliver materials packaged within their interior.
机译:保育室是天然存在的核糖核蛋白颗粒,具有巨大的内部体积,大到足以封装数百种蛋白质。它们是高度保守的,并且存在于几乎所有的真核细胞中,每个细胞的大小为104到107个颗粒。重组金库可以在体外生产和改造,以实现细胞靶向和蛋白质包装。这些纳米尺寸的颗粒具有许多期望的特性,这些特性可能使其具有用作药物输送载体的优势。使用可光活化的绿色荧光蛋白(PAGFP)标记的穹顶,我们证明了在活细胞中单像素光活化后,颗粒迅速扩散到整个细胞质中。尽管暴露于多种细胞压力下,它们的体内运动仍保持相对不变,这表明穹顶在细胞质中基本上不受限制。从表达CFP或YFP标记的穹ault的聚乙二醇(PEG)融合杂种细胞中观察到荧光共振能量转移(FRET),这表明穹ault可以在体内交换主要穹ault蛋白(MVP)亚基。使用重组金库对这种交换的体外机制进行的研究表明,它们能够在颗粒腰部快速分离并重新组装成整个金库,从而支持半金库交换机制。该数据提供了一种方法,通过该方法金库可以与其蜂窝环境进行功能性交互并传递包装在其内部的材料。

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