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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The role of endocytosis in the uptake and intracellular trafficking of PepFect14-nucleic acid nanocomplexes via class A scavenger receptors
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The role of endocytosis in the uptake and intracellular trafficking of PepFect14-nucleic acid nanocomplexes via class A scavenger receptors

机译:内吞作用通过A类清道夫受体在PepFect14-核酸纳米复合物的摄取和细胞内运输中的作用

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Cell penetrating peptides are efficient tools to deliver various bioactive cargos into cells, but their exactfunctioning mechanism is still debated. Recently, we showed that a delivery peptide PepFect14 condenses oligonudeotides (ON) into negatively charged nanocomplexes that are taken up by cells via class A scavenger receptors (SR-As). Here we unraveled the uptake mechanism and intracellular trafficking of PF14-ON nanocomplexes in HeLa cells. Macropinocytosis and caveolae-mediated endocytosis are responsible for the intracellular functionality of nucleic acids packed into nanocomplexes. However, only a negligible fraction of the complexes were trafficked to endoplasmic reticulum or Golgi apparatus the common destinations of caveolar endocytosis. Neither were the PF14-SCO nanocomplexes routed to endo-lysosomal pathway, and they stayed in vesicles with slightly acidic pH, which were not marked with LysoSensor. "Naked" ON, in contrary, was rapidly targeted to acidic vesicles and lysosomes. The transmission electron microscopy analysis of interactions between SR-As and PF14-ON nanocomplexes on ultrastructural level revealed that nanocomplexes localized on the plasma membrane in close proximity to SR-As and their colocalization is retained in cells, suggesting that PF14-ON complexes associate with targeted receptors. (C) 2015 Elsevier B.V. All rights reserved.
机译:细胞穿透肽是将各种生物活性物质转运到细胞中的有效工具,但其确切的功能机制仍存在争议。最近,我们显示了传递肽PepFect14将寡核苷酸(ON)缩合为带负电荷的纳米复合物,该复合物被细胞通过A类清除剂受体(SR-As)吸收。在这里,我们揭示了HeLa细胞中PF14-ON纳米复合物的摄取机制和细胞内运输。巨胞饮作用和小窝介导的内吞作用负责包装成纳米复合物的核酸的细胞内功能。然而,只有极少部分的复合物被转运到内质网或高尔基体,这是海绵体内吞的常见目的地。 PF14-SCO纳米复合物都没有被路由至溶酶体途径,它们停留在pH呈弱酸性的囊泡中,而LysoSensor并没有标记。相反,“裸” ON迅速被靶向酸性囊泡和溶酶体。透射电子显微镜分析SR-As与PF14-ON纳米复合物之间的相互作用的超微结构表明,纳米复合物位于质膜上紧邻SR-As,并且它们的共定位保留在细胞中,这表明PF14-ON复合物与靶向受体。 (C)2015 Elsevier B.V.保留所有权利。

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