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首页> 外文期刊>ACS nano >Vault nanoparticles containing an adenovirus-derived membrane lytic protein facilitate toxin and gene transfer
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Vault nanoparticles containing an adenovirus-derived membrane lytic protein facilitate toxin and gene transfer

机译:含有腺病毒衍生的膜裂解蛋白的穹顶纳米颗粒促进毒素和基因转移

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摘要

Nonviral methods of gene delivery possess several advantages over that of viral-based vectors, including having increased safety. However, the ability to achieve effective transport of therapeutic molecules across host cell membranes via nonviral methods remains a significant goal. Cell-derived nanoparticles known as vaults have been proposed as novel candidate transfer vehicles for various foreign molecules. Recombinant vault particles enter cells via macropinocytosis or phagocytosis but lack demonstrable membrane penetrating activity. To explore the feasibility of improving vault penetration into target cells, we incorporated the membrane lytic domain of adenovirus protein VI (pVI) into the interior of recombinant vault particles via fusion to the vault poly(ADP-ribose) polymerase (VPARP) interaction domain. The membrane lytic activity of the pVI domain was retained upon incorporation into vault particles. Moreover, internalization of vault-pVI complexes into murine macrophages promoted co-delivery of a soluble ribotoxin or a cDNA plasmid encoding GFP. These findings indicate that vault particles can be modified to enhance cell transfer of selected biomolecules.
机译:与基于病毒的载体相比,基因传递的非病毒方法具有多个优点,包括具有更高的安全性。然而,通过非病毒方法实现治疗分子跨宿主细胞膜的有效运输的能力仍然是重要的目标。已经提出了被称为金库的源自细胞的纳米颗粒作为各种外来分子的新型候选转移载体。重组穹顶颗粒通过巨胞饮或吞噬作用进入细胞,但缺乏明显的膜穿透活性。为了探索提高金库穿透靶细胞的可行性,我们将腺病毒蛋白VI(pVI)的膜裂解域通过与金库聚(ADP-核糖)聚合酶(VPARP)相互作用域融合而整合到重组金库颗粒内部。 pVI结构域的膜溶解活性在掺入金库颗粒中后得以保留。而且,将金库-pVI复合物内在化为鼠巨噬细胞可促进可溶性核毒素或编码GFP的cDNA质粒的共递送。这些发现表明,可以修饰穹顶颗粒以增强所选生物分子的细胞转移。

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