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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Cell surface binding and uptake of arginine- and lysine-rich penetratin peptides in absence and presence of proteoglycans
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Cell surface binding and uptake of arginine- and lysine-rich penetratin peptides in absence and presence of proteoglycans

机译:在不存在和存在蛋白聚糖的情况下,细胞表面结合和富含精氨酸和赖氨酸的渗透肽的摄取

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摘要

Cell surface proteoglycans (PGs) appear to promote uptake of arginine-rich cell-penetrating peptides (CPPs), but their exact functions are unclear. To address if there is specificity in the interactions of arginines and PGs leading to improved internalization, we used flow cytometry to examine uptake in fetation to cell surface binding for penetratin and two arginine/lysine substituted variants (PenArg and PenLys) in wildtype CHO-K1 and PG-deficient A745 cells. All peptides were more efficiently internalized into CHO-K1 than into A745, but their cell surface binding was independent of cell type. Thus, PGs promote internalization of cation-ic peptides, irrespective of the chemical nature of their positive charges. Uptake of each peptide was linearly dependent on its cell surface binding, and affinity is thus important for efficiency. However, the gradients of these linear dependencies varied significantly. Thus each peptide's ability to stimulate uptake once bound to the cell surface is reliant on formation of specific uptake-promoting interactions. Heparin affinity chromatog-raphy and clustering experiments showed that penetratin and PenArg binding to sulfated sugars is stabilized by hydrophobic interactions and result in clustering, whereas PenLys only interacts through electrostatic attraction. This may have implications for the molecular mechanisms behind arginine-specific uptake stimulation as penetratin and PenArg are more efficiently internalized than PenLys upon interaction with PGs. However, PenArg is also least affected by removal of PGs. This indicates that an increased arginine content not only improve PG-dependent uptake but also that PenArg is more adaptable as it can use several portals of entry into the cell.
机译:细胞表面蛋白聚糖(PGs)似乎可以促进富含精氨酸的细胞穿透肽(CPPs)的摄取,但其确切功能尚不清楚。为了解决精氨酸和PG相互作用是否存在特异性导致内部化改善的问题,我们使用流式细胞仪检测了野生型CHO-K1中穿透肽和两个精氨酸/赖氨酸取代的变体(PenArg和PenLys)对细胞表面结合的吸收。和缺乏PG的A745细胞。与A745相比,所有肽都更有效地内化到CHO-K1中,但它们的细胞表面结合与细胞类型无关。因此,无论其正电荷的化学性质如何,PG都会促进阳离子肽的内在化。每种肽的摄取线性依赖于其细胞表面结合,因此亲和力对效率很重要。但是,这些线性相关性的梯度变化很大。因此,一旦结合到细胞表面,每种肽刺激摄取的能力就取决于特定的促进摄取的相互作用的形成。肝素亲和层析和聚类实验表明,戊二素和PenArg与硫酸化糖的结合通过疏水相互作用得以稳定并导致聚类,而PenLys仅通过静电吸引相互作用。这可能与精氨酸特异性摄取刺激背后的分子机制有关,因为与PGs相互作用时,Penetratin和PenArg比PenLys更有效地被内在化。但是,PenArg受PG的影响也最小。这表明增加的精氨酸含量不仅改善了PG依赖的摄取,而且PenArg更具有适应性,因为它可以使用进入细胞的多个入口。

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