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Temperature-, concentration- and cholesterol-dependent translocation of L- and D-octa-arginine across the plasma and nuclear membrane of CD34+ leukaemia cells

机译:L-和D-八-精氨酸跨CD34 +白血病细胞的质膜和核膜的温度,浓度和胆固醇依赖性转运

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pDelineating the mechanisms by which cell-penetrating peptides, such as HIV-Tat peptide, oligoarginines and penetratin, gain access to cells has recently received intense scrutiny. Heightened interest in these entities stems from their ability to enhance cellular delivery of associated macromolecules, such as genes and proteins, suggesting that they may have widespread applications as drug-delivery vectors. Proposed uptake mechanisms include energy-independent plasma membrane translocation and energy-dependent vesicular uptake and internalization through endocytic pathways. In the present study, we investigated the effects of temperature, peptide concentration and plasma membrane cholesterol levels on the uptake of a model cell-penetrating peptide, L-octa-arginine (L-R8) and its D-enantiomer (D-R8) in CD34sup+/sup leukaemia cells. We found that, at 4–12 °C, L-R8 uniformly labels the cytoplasm and nucleus, but in cells incubated with D-R8 there is additional labelling of the nucleolus which is still prominent at 30 °C incubations. At temperatures between 12 and 30 °C, the peptides are also localized to endocytic vesicles which consequently appear as the only labelled structures in cells incubated at 37 °C. Small increases in the extracellular peptide concentration in 37 °C incubations result in a dramatic increase in the fraction of the peptide that is localized to the cytosol and promoted the binding of D-R8 to the nucleolus. Enhanced labelling of the cytosol, nucleus and nucleolus was also achieved by extraction of plasma membrane cholesterol with methyl-β-cyclodextrin. The data argue for two, temperature-dependent, uptake mechanism for these peptides and for the existence of a threshold concentration for endocytic uptake that when exceeded promotes direct translocation across the plasma membrane./p
机译:>最近描述了细胞渗透肽(如HIV-Tat肽,寡精氨酸和渗透素)进入细胞的机制受到了严格的审查。人们对这些实体的兴趣日益浓厚,原因是它们增强了相关大分子(如基因和蛋白质)的细胞传递能力,这表明它们可能作为药物传递载体得到广泛应用。拟议的摄取机制包括与能量无关的质膜移位和与能量有关的囊泡摄取以及通过内吞途径的内在化。在本研究中,我们研究了温度,肽浓度和质膜胆固醇水平对细胞渗透性肽L-八-精氨酸(L-R8)及其D-对映体(D-R8)摄取的影响。在CD34 + 白血病细胞中我们发现,在4–12°C时,L-R8均匀地标记细胞质和细胞核,但是在与D-R8孵育的细胞中,还有另外的核仁标记,在30°C的孵育中仍很突出。在12至30℃之间的温度下,所述肽也定位于内吞小泡,其因此在37℃温育的细胞中作为唯一标记的结构出现。在37℃温育中细胞外肽浓度的小幅增加导致定位于细胞溶质并促进D-R8与核仁结合的肽比例急剧增加。还可以通过用甲基-β-环糊精提取质膜胆固醇来实现对细胞质,细胞核和核仁的增强标记。数据证明了这些肽的两种依赖温度的吸收机制,以及内吞摄取阈值浓度的存在,当超过该浓度时,就会促进跨质膜的直接转运。

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