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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >CPP-protein constructs induce a population of non-acidic vesicles during trafficking through endo-lysosomal pathway
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CPP-protein constructs induce a population of non-acidic vesicles during trafficking through endo-lysosomal pathway

机译:CPP蛋白构建体在通过内溶酶体途径运输过程中诱导了非酸性囊泡群体

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The major limitation in the application of bioactive molecules is their low permeation across plasma membrane. Effective transporters - cell-penetrating peptides (CPPs) - are utilized to enhance uptake of various cargo upon attachment to its sequences. Still, information about relevance of different endocytic routes during CPP-cargo internalization is ambiguous and underlying mechanism(s) of intracellular trafficking is even less understood. We first defined involvement of recycling pathway in trafficking of 3 different CPPs - transportan, oligoarginine and Tat - complexed to avidin-TexasRed in Cos-7 cells in relation to trans-Golgi network spatially constraining recycling endosomes. By confocal microscopy, only a negligible fraction of complexes-containing vesicles were found inside trans-Golgi ring suggesting its marginal role in CIPP-mediated delivery. Secondly, we characterized engagement of endo-lysosomal pathway to assess acidity of complexes-containing vesicles. CPPs induced 3 different populations of complexes-containing vesicles which size and proportion depended on CPP, time and concentration. In time, more complexes were targeted to low-pH structures. However, a population of complexes containing vesicles was observed to retain rather neutral pH. Induction of vesicles with non-acidic pH generated i.e. by caveolin-dependent endocytosis or by CPPs themselves during intracellular trafficking could be the key step in inducement of escape of complexes from endosomal structures, a limiting step in effective cargo delivery by CPPs.
机译:生物活性分子应用中的主要限制是它们跨质膜的渗透性低。有效的转运蛋白-细胞穿透肽(CPP)-用于在附着到其序列上后增强对各种货物的吸收。尽管如此,有关CPP货物内在化过程中不同内吞途径相关性的信息尚不明确,甚至根本不了解细胞内运输的潜在机制。我们首先定义了回收途径在Cos-7细胞中与抗生物素蛋白-得克萨斯红复合的3种不同CPP(转运蛋白,寡精氨酸和Tat)的运输中,涉及跨高尔基网络在空间上限制回收内体。通过共聚焦显微镜检查,在反式高尔基环内部仅发现了可忽略不计的含复合物的囊泡,提示其在CIPP介导的转运中的边缘作用。其次,我们表征了内溶酶体途径的参与,以评估含有复合物的囊泡的酸度。 CPP诱导了3种不同的含有复合物的囊泡,其大小和比例取决于CPP,时间和浓度。随着时间的流逝,更多的复合物被靶向低pH结构。然而,观察到含有囊泡的复合物群体保持相当中性的pH。在胞内运输过程中,由小窝蛋白依赖性内吞作用或CPP自身诱导的非酸性pH诱导的囊泡可能是诱导复合物从内体结构逸出的关键步骤,这是CPP有效运送货物的限制步骤。

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