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Development of expression systems for the production of recombinant human Fas ligand extracellular domain derivatives using Pichia pastoris and preparation of the conjugates by site-specific chemical modifications: A review

机译:开发利用巴斯德毕赤酵母生产重组人Fas配体胞外域衍生物的表达系统并通过位点特异性化学修饰制备缀合物

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Human Fas ligand extracellular domain (hFasLECD) is a biomedically important glycoprotein with three potential N-linked carbohydrate-chain attachment sites. hFasLECD can induce an apoptotic cell-death in many malignant cells. Hence, the creation of novel molecular tools exhibiting useful biological activities, based on the exploitation of this protein domain as their components, opens up a great possibility of the advancements in future medical applications. This review mainly focuses on the development of expression systems for obtaining various derivatives of recombinant hFasLECD using Pichia pastoris and the preparation of the conjugates by site-specific chemical modifications of the expressed products. Firstly, a brief introduction of human Fas ligand protein and an overview of the previous works, on the heterologous expression systems for recombinant hFasLECD as well as the associated derivatives aimed at medical applications, were described. Then, the experimental results, obtained during our investigations into the development of the expression systems for the recombinant hFasLECD derivatives using chemically synthesized artificial genes in Pichia pastoris , were summarized. After that, the current state of the methodology for preparation of the hFasLECD conjugates by site-specific chemical modifications, and the functional characterizations of the prepared conjugates, were presented. Finally, conclusions, including a relevant discussion and future perspectives, are provided.
机译:人Fas配体胞外域(hFasLECD)是具有3个潜在的N-连接的碳水化合物链附着位点的重要的生物医学糖蛋白。 hFasLECD可以在许多恶性细胞中诱导凋亡性细胞死亡。因此,基于对该蛋白质结构域作为其组分的开发,显示出具有有用生物活性的新型分子工具,为将来的医学应用发展提供了很大的可能性。这篇综述主要集中在表达系统的开发上,该系统用于利用巴斯德毕赤酵母获得重组hFasLECD的各种衍生物,以及通过表达产物的位点特异性化学修饰来制备缀合物。首先,描述了人类Fas配体蛋白的简要介绍和有关重组hFasLECD的异源表达系统以及针对医学应用的相关衍生物的先前工作的概述。然后,总结了我们在研究巴斯德毕赤酵母中使用化学合成人工基因开发重组hFasLECD衍生物表达系统的实验结果。之后,介绍了通过位点特异性化学修饰制备hFasLECD缀合物的方法的当前状态,以及所制备缀合物的功能表征。最后,提供了包括相关讨论和未来观点在内的结论。

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