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首页> 外文期刊>Journal of Medicinal Chemistry >Engineering Stabilized Vascular Endothelial Growth Factor-A Antagonists: Synthesis, Structural Characterization, and Bioactivity of Grafted Analogues of Cyclotides
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Engineering Stabilized Vascular Endothelial Growth Factor-A Antagonists: Synthesis, Structural Characterization, and Bioactivity of Grafted Analogues of Cyclotides

机译:工程稳定的血管内皮生长因子-A拮抗剂:环氧化物嫁接类似物的合成,结构表征和生物活性。

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摘要

Cyclotides are plant derived mini-proteins with compact folded structures and exceptional stability. Their stability derives from a head-to-tail cyclized backbone coupled with a cystine knot arrangement of three-conserved disulfide bonds. Taking advantage of this stable framework we developed novel VEGF-A antagonists by grafting a peptide epitope involved in VEGF-A antagonism onto the stable cyclotide framework. Antagonists of this kind have potential therapeutic applications in diseases where angiogenesis is an important component of disease progression, including cancer and rheumatoid arthritis. A grafted analogue showed biological activity in an in vitro VEGF-A antagonism assay at low micromolar concentration and the in vitro stability of the target epitope was markedly increased using this approach. In general, the stabilization of bioactive peptide epitopes is a significant problem in medicinal chemistry and in the Current study we have provided insight into one approach to stabilize these peptides in a biological environment.
机译:环肽是植物来源的微型蛋白,具有紧凑的折叠结构和出色的稳定性。它们的稳定性源自头尾环化的骨架以及三保守的二硫键的胱氨酸结排列。利用这种稳定的框架,我们通过将参与VEGF-A拮抗作用的肽表位嫁接到稳定的环肽框架上,开发了新型的VEGF-A拮抗剂。这种拮抗剂在包括血管生成是疾病进展的重要组成部分的疾病中具有潜在的治疗应用,包括癌症和类风湿性关节炎。嫁接的类似物在低微摩尔浓度的体外VEGF-A拮抗试验中显示出生物学活性,并且使用这种方法显着提高了目标表位的体外稳定性。通常,生物活性肽表位的稳定化是药物化学中的重要问题,在当前的研究中,我们提供了一种在生物环境中稳定这些肽的方法的见解。

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