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Evaluating the translocation properties of a new nuclear targeted penetrating peptide using two fluorescent markers

机译:使用两个荧光标记物评估新的核靶向穿透肽的转运特性

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Human-derived cell penetrating peptides (CPPs) have attracted much more attentions than other CPPs which are limited by their potential toxicity and immunogenicity. Previously, we identified a novel human-originated CPP (named heparin-binding domain (HBD) in this article), which derived from the C-terminus of human extracellular superoxide dismutase, and demonstrated HBD is an efficient vector for delivering exogenous drug molecules such as apoptin into HeLa cells. In this study, we found this novel CPP showed differentiated efficiency in several tested cell lines. Heparin competitive inhibition experiment and heparanase pre-incubation experiment showed cell surface polysaccharides play an important role for the transmembrane transport. The results of endocytosis inhibitors suggested that HBD penetrates the cell membrane via a direct translocation, which is different from that of TAT, a classical clathrin-mediated endocytosis. HBD could deliver up to 90 kD protein cargoes into cells. Different conjugated modes with cargo molecules greatly affect their translocation efficiency. HBD also showed significant nuclear transport capacity when it was incubated with HeLa cells. Furthermore, the core region for HBD possessing membrane-penetrating ability was identified by deletion analyses. These results would be helpful for developing HBD as a new nuclear delivery tool for therapeutic biomolecules.
机译:人源性细胞穿透肽(CPPs)比其他CPPs受到更多关注,其他CPPs受其潜在的毒性和免疫原性限制。以前,我们鉴定了一种新型的源自人的CPP(在本文中称为肝素结合域(HBD)),其来源于人细胞外超氧化物歧化酶的C末端,并证明了HBD是一种有效的载体,可用于输送外源性药物分子,例如作为凋亡素进入HeLa细胞。在这项研究中,我们发现这种新颖的CPP在几种测试的细胞系中显示出不同的效率。肝素竞争抑制实验和乙酰肝素酶预培养实验表明,细胞表面多糖在跨膜转运中起重要作用。内吞作用抑制剂的结果表明,HBD通过直接易位穿透细胞膜,这不同于经典的网格蛋白介导的内吞作用TAT。 HBD可以将多达90 kD的蛋白质转运到细胞中。货物分子的不同共轭模式极大地影响了它们的转运效率。与HeLa细胞孵育时,HBD还显示出显着的核转运能力。此外,通过缺失分析鉴定了具有膜穿透能力的HBD的核心区域。这些结果将有助于发展HBD作为治疗性生物分子的新核传递工具。

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