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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Non-endocytic penetration of core histones into petunia protoplasts and cultured cells: a novel mechanism for the introduction of macromolecules into plant cells
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Non-endocytic penetration of core histones into petunia protoplasts and cultured cells: a novel mechanism for the introduction of macromolecules into plant cells

机译:核心组蛋白对矮牵牛原生质体和培养细胞的非内吞渗透:将大分子引入植物细胞的新机制

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摘要

The results of the present work demonstrate that core histones are able to penetrate the plasma membrane of plant cells. Confocal microscopy has revealed that incubation of petunia protoplasts with fluorescently labeled core histones resulted in cell penetration and nuclear import of the externally added histones. Intracellular accumulation was also confirmed by an ELISA-based quantitative method using biotin-labeled histones. Penetration into petunia protoplasts and cultured cells was found to be non-saturable, occurred at room temperature and at 4 degreesC and was not inhibited by Nocodazole. Furthermore, penetration of the biotinylated histone was neither blocked by the addition of an excess of free biotin molecules, nor by non-biotinylated histone molecules. All these results clearly indicate that the observed uptake is due to direct translocation through the cell plasma membrane and does not occur via endocytosis. Our results also show that the histones H2A and H4 were able to mediate penetration of covalently attached BSA molecules demonstrating the potential of the histones as carriers for the delivery of macromolecules into plant cells. To the best of our knowledge, the findings of the present paper demonstrate, for the first time, the activity of cell penetrating proteins (CPPs) in plant cells. (C) 2004 Elsevier B.V. All rights reserved.
机译:本工作的结果证明核心组蛋白能够穿透植物细胞的质膜。共聚焦显微镜显示,将矮牵牛原生质体与荧光标记的核心组蛋白一起孵育会导致细胞渗透和外部添加的组蛋白的核输入。还使用生物素标记的组蛋白通过基于ELISA的定量方法确认了细胞内积累。发现渗透到矮牵牛原生质体和培养的细胞中是不饱和的,发生在室温和4℃下并且不受诺考达唑的抑制。此外,生物素化的组蛋白的渗透既不被过量的游离生物素分子的添加所阻断,也未被非生物素化的组蛋白分子所阻断。所有这些结果清楚地表明,观察到的摄取是由于通过细胞质膜的直接易位,而不是通过内吞作用发生的。我们的结果还表明,组蛋白H2A和H4能够介导共价连接的BSA分子的渗透,表明组蛋白作为将大分子输送至植物细胞的载体的潜力。据我们所知,本论文的发现首次证明了植物细胞中细胞穿透蛋白(CPPs)的活性。 (C)2004 Elsevier B.V.保留所有权利。

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