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用于治疗开发的噬菌体展示衍生IgNAR V区结合结构域

Phage Display Derived IgNAR V Region Binding Domains for Therapeutic Development.

作者信息

Ubah Obinna C, Barelle Caroline J, Buschhaus Magdalena J, Porter Andrew J

机构信息

Elasmogen Limited, Liberty Building, Foresterhill Road, Aberdeen, AB25 2ZP, United Kingdom.

出版信息

Curr Pharm Des. 2016;22(43):6519-6526. doi: 10.2174/1381612822666160907091708.

Abstract

Phage display technology has revolutionized the science of drug discovery by transforming the generation and manipulation of ligands, such as antibody fragments, enzymes, and peptides. The basis of this technology is the expression of recombinant proteins or peptides fused to a phage coat protein, and subsequent isolation of ligands based on a variety of catalytic, physicochemical/binding kinetic and/or biological characteristics. An incredible number of diagnostic and therapeutic domains have been successfully isolated using phage display technology. The variable domain of the New Antigen Receptors (VNAR) found in cartilaginous fish, is also amenable to phage display selection. Whilst not an antibody, VNARs are unquestionable the oldest (450 million years), and smallest antigen binding, single-domains so far identified in the vertebrate kingdom. Their role as an integral part of the adaptive immune system of sharks has been well established, enhancing our understanding of the evolutionary origins of humoral immunity and the unusual but divergent ancestry of the VNARs themselves. VNARs exhibit remarkable physicochemical properties, such as small size, stability in extreme conditions, solubility, molecular flexibility, high affinity and selectivity for target. The purpose of this review is to illustrate the important role phage display has played in the isolation and characterization of potent therapeutic and diagnostic VNAR domains.

摘要

噬菌体展示技术通过改变配体(如抗体片段、酶和肽)的生成和操作,彻底改变了药物发现科学。该技术的基础是将重组蛋白或肽与噬菌体外壳蛋白融合表达,随后根据各种催化、物理化学/结合动力学和/或生物学特性分离配体。使用噬菌体展示技术已成功分离出数量惊人的诊断和治疗领域。在软骨鱼类中发现的新抗原受体(VNAR)的可变结构域也适用于噬菌体展示筛选。虽然VNAR不是抗体,但它们无疑是迄今为止在脊椎动物王国中发现的最古老(4.5亿年)且最小的抗原结合单结构域。它们作为鲨鱼适应性免疫系统不可或缺的一部分的作用已得到充分确立,这增进了我们对体液免疫进化起源以及VNAR自身不寻常但不同的谱系的理解。VNAR具有显著的物理化学性质,如体积小、在极端条件下稳定、溶解性好、分子柔韧性高、对靶点具有高亲和力和选择性。本综述的目的是阐述噬菌体展示在有效治疗和诊断VNAR结构域的分离和表征中所起的重要作用。

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