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Core Functional Sequence of C-terminal GAG-binding Domain Directs Cellular Uptake of IGFBP-3-derived Peptides

机译:C端GAG结合域的核心功能序列指导细胞摄取IGFBP-3衍生肽。

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摘要

The current study clarifies the role of the Glycosaminoglycan (GAG)-binding domain of insulin-like growth factor binding protein-3 (IGFBP-3) in cell penetration. The cell penetration function of IGFBP-3 has been mapped to an 18-residue GAG-binding domain in the C-terminal region that mobilizes cellular uptake and nuclear localization of unrelated proteins. Uptake of KW-22, a 22-residue peptide that encompasses the 18-residue GAG-binding domain, and another IGFBP-3 peptide carrying a streptavidin protein cargo was investigated in Chinese hamster ovary (CHO) cells defective at several steps of biosynthesis of cell surface GAGs. The severity of GAG truncation was highly correlated to the impairment of uptake ranging from complete abrogation to only a partial reduction, suggesting that GAG-binding is required for uptake. The 18-residue GAG-binding domain consists of an 8-residue KK-8 basic sequence devoid of Arg and an adjacent 10-residue QR-10 sequence rich in Arg. Peptide mapping of uptake and GAG-binding activities within the KW-22 peptide showed that the 8-residue KK-8 basic peptide retained 80% of GAG-binding activity with no uptake activity while the 10-residue QR-10 peptide retained 53% of uptake activity and 18% of GAG-binding activity. This suggests that KK-8 carries out the majority of GAG-binding function while QR-10 carries out the majority of the cell entry function. To our knowledge, this is the first report of physical separation of the uptake and GAG-binding functions within a short cell penetrating peptide and may shed light on the general mechanism of uptake of Arg-rich CPPs and guide new design of Arg-rich CPP-assisted drug/gene delivery systems.
机译:目前的研究阐明了胰岛素样生长因子结合蛋白3(IGFBP-3)的糖胺聚糖(GAG)结合域在细胞渗透中的作用。 IGFBP-3的细胞渗透功能已映射到C末端区域中的18个残基的GAG结合结构域,该结构域可动员无关蛋白质的细胞摄取和核定位。在中国仓鼠卵巢(CHO)细胞的几个生物合成步骤中,研究了有缺陷的KW-22(一种包含18个残基的GAG结合域的22个残基的肽)和另一种携带链霉亲和素蛋白的IGFBP-3肽的摄取。细胞表面GAG。从完全废除到仅部分减少,GAG截短的严重程度与摄取的损害高度相关,这表明摄取需要GAG结合。 18残基的GAG结合结构域由不含Arg的8残基的KK-8基本序列和富含Arg的相邻的10残基的QR-10序列组成。 KW-22肽内的摄取和GAG结合活性的肽图显示,8残基的KK-8碱性肽保留了80%的GAG结合活性而无摄取活性,而10残基的QR-10肽则保留了53%吸收活性和GAG结合活性的18%。这表明KK-8执行大多数GAG结合功能,而QR-10执行大多数细胞进入功能。据我们所知,这是第一个关于短细胞穿透肽内摄取和GAG结合功能的物理分离的报道,它可能阐明富含Arg的CPP摄取的一般机制,并指导富含Arg的CPP的新设计辅助药物/基因递送系统。

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