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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The uptake of HIV Tat peptide proceeds via two pathways which differ from macropinocytosis
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The uptake of HIV Tat peptide proceeds via two pathways which differ from macropinocytosis

机译:HIV Tat肽的摄取通过不同于巨胞饮的两种途径进行

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摘要

Cell penetrating peptides (CPPs) have been extensively studied as vectors for cellular delivery of therapeutic molecules, yet the identity of their uptake routes remained unclear and is still under debate. In this study we provide new insights into CPP entry routes by quantitatively measuring the intracellular uptake of FAM-labeled Tat-peptide under rigorous kinetic and thermal conditions. The uptake of Tat-peptide between 4 and 15 degrees C corresponds to Q(10) = 1.1, proceeding through a prompt (<5 min), temperature-independent process, suggesting direct membrane translocation. At longer durations, Tat rate of uptake shows linear dependence on temperature with Q(10) = 1.44, accompanied by activation energy E-a = 4.45 Kcal/mole. These values are significantly lower than those we found for the macropinocytosis probe dextran (Q(10)= 22 and E-a = 72 Kcal/mole) which possesses an exponential dependence on temperature, characteristic of endocytosis processes. Tat-peptide and dextran do not interfere with each other's uptake rate and the ratio of Tat-peptide uptake to its extracellular concentration is similar to 15 times higher than that for dextran. In addition, Phloretin, a modulator of cell membrane dipole potential, is shown to increase dextran uptake but to reduce that of Tat. We conclude that the uptake of Tat differs from that of dextran in all parameters. Tat uptake proceeds by dual entry routes which differ by their energy dependence. (C) 2014 Elsevier B.V. All rights reserved.
机译:细胞穿透肽(CPPs)已作为细胞递送治疗分子的载体进行了广泛研究,但其吸收途径的身份仍不清楚,仍在争论中。在这项研究中,我们通过在严格的动力学和热条件下定量测量FAM标记的Tat肽在细胞内的吸收,为CPP进入途径提供了新见解。 Tat肽在4到15摄氏度之间的摄取对应于Q(10)= 1.1,通过迅速的(<5分钟),与温度无关的过程进行,提示直接膜易位。在更长的时间里,Tat摄取率显示出对温度的线性依赖性,Q(10)= 1.44,同时伴随着活化能E-a = 4.45 Kcal / mol。这些值显着低于我们发现的巨胞饮探针右旋糖酐(Q(10)= 22,E-a = 72 Kcal / mole),后者对温度具有指数依赖性,是胞吞作用的特征。 Tat肽和右旋糖酐不会互相干扰,Tat肽的吸收量与其细胞外浓度之比约为葡聚糖的15倍。此外,显示出细胞膜偶极电位的调节剂Phloretin增加了葡聚糖的摄取,但降低了Tat的摄取。我们得出的结论是,在所有参数上,Tat的吸收均与右旋糖酐的吸收不同。通过双重进入途径来吸收脂肪,这取决于它们的能量依赖性。 (C)2014 Elsevier B.V.保留所有权利。

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