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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Multivalent presentation of the cell-penetrating peptide nona-arginine on a linear scaffold strongly increases its membrane-perturbing capacity
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Multivalent presentation of the cell-penetrating peptide nona-arginine on a linear scaffold strongly increases its membrane-perturbing capacity

机译:在线性支架上的细胞穿透肽Nona-精氨酸的多价呈递强烈增加其膜的扰动能力

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Arginine-rich cell-penetrating peptides (CPP) are widely employed as delivery vehicles for a large variety of macromolecular cargos. As a mechanism-of-action for induction of uptake cross-linking of heparan sulfates and interaction with lipid head groups have been proposed. Here, we employed a multivalent display of the CPP nona-arginine (R9) on a linear dextran scaffold to assess the impact of heparan sulfate and lipid interactions on uptake and membrane perturbation. Increased avidity through multivalency should potentiate molecular phenomena that may only play a minor role if only individual peptides are used. To this point, the impact of multivalency has only been explored for dendrimers, CPP-decorated proteins and nanoparticles. We reasoned that multivalency on a linear scaffold would more faithfully mimic the arrangement of peptides at the membrane at high local peptide concentrations. On average, five R9 were coupled to a linear dextran backbone. The conjugate displayed a direct cytoplasmic uptake similar to free R9 at concentrations higher than 10 μM. However, this uptake was accompanied by an increased membrane disturbance and cellular toxicity that was independent of the presence of heparan sulfates. In contrast, for erythrocytes, the multivalent conjugate induced aggregation, however, showed only limited membrane perturbation. Overall, the results demonstrate that multivalency of R9 on a linear scaffold strongly increases the capacity to interact with the plasma membrane. However, the induction of membrane perturbation is a function of the cellular response to peptide binding.
机译:富含精氨酸的细胞穿透肽(CPP)被广泛用作各种大分子尸体的递送载体。作为诱导摄取硫酸乙酰肝素硫酸盐和与脂质头基团相互作用的作用机制。这里,我们在线性葡聚糖支架上使用了多价显示CPP Nona-精氨酸(R9),以评估硫酸乙酰肝素和脂质相互作用对摄取和膜扰动的影响。通过多价的耐酸性增加,如果只使用单独的肽,则可能仅发挥轻微作用的分子现象。为此,仅针对树枝状大分子,CPP装饰蛋白质和纳米颗粒探索了多价的影响。我们推断着线性支架上的多价将更忠实地模仿在高局部肽浓度下膜在膜上的布置。平均而言,五个R9偶联到线性葡聚糖骨架。缀合物显示出类似于高于10μm的自由R9的直接细胞质摄取。然而,这种摄取伴随着增加的膜扰动和细胞毒性,与硫酸普普酸普酸普肽的存在无关。相反,对于红细胞,多价缀合物诱导的聚集,但仅显示了有限的膜扰动。总体而言,结果表明,线性支架上R9的多价强烈增加与质膜相互作用的能力。然而,膜扰动的诱导是对肽结合的细胞反应的函数。

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