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基于文库的展示技术:我们目前的状况如何?

Library-based display technologies: where do we stand?

作者信息

Galán Asier, Comor Lubos, Horvatić Anita, Kuleš Josipa, Guillemin Nicolas, Mrljak Vladimir, Bhide Mangesh

机构信息

ERA Chair FP7, Internal diseases, Faculty of Veterinary Medicine, University of Zagreb, Heinzelova 55, 10 000 Zagreb, Croatia.

Laboratory of Biomedical Microbiology and Immunology, University of Veterinary Medicine and Pharmacy, Kosice, Slovakia.

出版信息

Mol Biosyst. 2016 Jul 19;12(8):2342-58. doi: 10.1039/c6mb00219f.

Abstract

Over the past two decades, library-based display technologies have been staggeringly optimized since their appearance in order to mimic the process of natural molecular evolution. Display technologies are essential for the isolation of specific high-affinity binding molecules (proteins, polypeptides, nucleic acids and others) for diagnostic and therapeutic applications in cancer, infectious diseases, autoimmune, neurodegenerative, inflammatory pathologies etc. Applications extend to other fields such as antibody and enzyme engineering, cell-free protein synthesis and the discovery of protein-protein interactions. Phage display technology is the most established of these methods but more recent fully in vitro alternatives, such as ribosome display, mRNA display, cis-activity based (CIS) display and covalent antibody display (CAD), as well as aptamer display and in vitro compartmentalization, offer advantages over phage in library size, speed and the display of unnatural amino acids and nucleotides. Altogether, they have produced several molecules currently approved or in diverse stages of clinical or preclinical testing and have provided researchers with tools to address some of the disadvantages of peptides and nucleotides such as their low affinity, low stability, high immunogenicity and difficulty to cross membranes. In this review we assess the fundamental technological features and point out some recent advances and applications of display technologies.

摘要

在过去二十年中,基于文库的展示技术自出现以来得到了惊人的优化,以模拟自然分子进化过程。展示技术对于分离特定的高亲和力结合分子(蛋白质、多肽、核酸等)至关重要,这些分子可用于癌症、传染病、自身免疫性疾病、神经退行性疾病、炎症性疾病等的诊断和治疗应用。其应用还扩展到其他领域,如抗体和酶工程、无细胞蛋白质合成以及蛋白质-蛋白质相互作用的发现。噬菌体展示技术是这些方法中最成熟的,但最近出现的完全体外替代方法,如核糖体展示、mRNA展示、基于顺式活性(CIS)的展示和共价抗体展示(CAD),以及适体展示和体外区室化,在文库大小、速度以及非天然氨基酸和核苷酸的展示方面比噬菌体具有优势。总之,它们已经产生了几种目前已获批准或处于不同临床或临床前测试阶段的分子,并为研究人员提供了工具,以解决肽和核苷酸的一些缺点,如低亲和力、低稳定性、高免疫原性和难以穿过细胞膜的问题。在这篇综述中,我们评估了这些展示技术的基本技术特征,并指出了一些最新进展和应用。

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