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Comparisons of biophysical properties and bioactivities of mono-PEGylated endostatin and an endostatin analog

机译:单聚乙二醇化内皮抑素和内皮抑素类似物的生物物理性质和生物活性的比较

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Endostatin (ES) is a well-established potent endogenous antiangiogenic factor. An ES variant, called zinc-binding protein-ES (ZBP-ES), is clinically available; however, its use is limited by rapid renal clearance and short residence time. PEGylation has been exploited to overcome these shortcomings, and mono-PEGylated ES (called M2ES) as well as mono-PEGylated ZBP-ES (MZBP-ES) are developed in our study. This study aimed to compare the biophysical properties and biological effects of M2ES and MZBP-ES to evaluate their druggability. Circular dichroism and tryptophan emission fluorescence were used to monitor the conformational changes of M2ES and MZBP-ES. Their resistance to trypsin digestion and guanidinium chloride (GdmCl)-induced unfolding was examined by Coomassie staining and tryptophan emission fluorescence, respectively. The biological effects of M2ES and MZBP-ES on endothelial cell migration were evaluated using Transwell migration and wound healing assays, and the uptake of M2ES and MZBP-ES in endothelial cells was also compared by Western blotting and immunofluorescence. Structural analyses revealed that M2ES has a more compact tertiary structure than MZBP-ES. Moreover, M2ES was more resistant to trypsin digestion and GdmCl-induced unfolding compared with MZBP-ES. In addition, although M2ES and MZBP-ES showed comparable levels of inhibiting transwell migration and wound healing of endothelial cells, M2ES displayed an increased ability to enter cells compared with MZBP-ES, possibly caused by the enhanced interaction with nucleolin. M2ES has a more compact tertiary structure, is more stable for trypsin digestion and GdmCl-induced unfolding, exhibits increased cellular uptake and shows equivalent inhibitory effects on cell migration relative to MZBP-ES, indicating that M2ES is a more promising candidate for anticancer drug development compared with MZBP-ES.
机译:内皮抑素(ES)是公认的有效内源性抗血管生成因子。临床上可获得一种称为锌结合蛋白-ES(ZBP-ES)的ES变体;但是,它的使用受到肾脏清除速度快和停留时间短的限制。已经利用聚乙二醇化来克服这些缺点,并且在我们的研究中开发了单聚乙二醇化的ES(称为M2ES)以及单聚乙二醇化的ZBP-ES(MZBP-ES)。这项研究旨在比较M2ES和MZBP-ES的生物物理特性和生物学效应,以评估它们的可药性。使用圆二色性和色氨酸发射荧光来监测M2ES和MZBP-ES的构象变化。分别通过考马斯染色和色氨酸发射荧光检查了它们对胰蛋白酶消化和氯化胍(GdmCl)诱导的折叠的抗性。使用Transwell迁移和伤口愈合测定法评估了M2ES和MZBP-ES对内皮细胞迁移的生物学作用,并且还通过Western印迹和免疫荧光法比较了M2ES和MZBP-ES在内皮细胞中的摄取。结构分析表明,M2ES的三级结构比MZBP-ES更紧凑。此外,与MZBP-ES相比,M2ES对胰蛋白酶消化和GdmCl诱导的解折叠更具抵抗力。此外,尽管M2ES和MZBP-ES表现出相当水平的抑制跨孔迁移和内皮细胞伤口愈合的能力,但与MZBP-ES相比,M2ES表现出更高的进入细胞的能力,这可能是由于与核仁素相互作用增强所致。 M2ES具有更紧凑的三级结构,对于胰蛋白酶消化和GdmCl诱导的折叠更稳定,与MZBP-ES相比,表现出增加的细胞摄取并显示出等效的细胞迁移抑制作用,表明M2ES是抗癌药物开发的更有希望的候选者与MZBP-ES相比。

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