噬菌体展示表位测定:识别受体-配体相互作用的范例。

Merrill J Rowley, Karen O'Connor, Lakshmi Wijeyewickrema
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引用次数: 82

摘要

与许多不同的蛋白质和非蛋白质性质的分子物种发生反应的抗体在生物学中被广泛研究并具有特定的用途,但识别的精确表位很少被很好地定义。抗原-抗体复合物的x射线晶体学定义表位(金标准程序)表明,大多数抗体表位是构象的,并通过与抗原分子表面的地形决定因素相互作用而指定。可用于确定这类表位的技术是有限的。使用基因特异性文库或随机肽文库进行噬菌体展示,为表位鉴定方法提供了一种强大的技术。该技术可以识别蛋白质抗原上对抗体结合至关重要的氨基酸,并且可以分离蛋白质和非蛋白质抗原的结构和功能同源基序的肽基序。这篇综述讨论了用于分离这种半模位的技术,以确认它们的特异性,并表征肽表位。此外,通过序列获得表位或同源位也有直接的实际应用,特别是开发新的诊断试剂,或治疗激动剂或拮抗剂分子。正如我们在这里讨论的那样,抗体表位定位技术可以通过识别未知起始剂的“免疫足迹”来探测自身免疫性疾病和某些癌症的起源,并且可以直接应用于更广泛的受体-配体相互作用的检测。
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Phage display for epitope determination: a paradigm for identifying receptor-ligand interactions.

Antibodies that react with many different molecular species of protein and non-protein nature are widely studied in biology and have particular utilities, but the precise epitopes recognized are seldom well defined. The definition of epitopes by X-ray crystallography of the antigen-antibody complex, the gold standard procedure, has shown that most antibody epitopes are conformational and specified by interactions with topographic determinants on the surface of the antigenic molecule. Techniques available for the definition of such epitopes are limited. Phage display using either gene-specific libraries, or random peptide libraries, provides a powerful technique for an approach to epitope identification. The technique can identify amino acids on protein antigens that are critical for antibody binding and, further, the isolation of peptide motifs that are both structural and functional mimotopes of both protein and non-protein antigens. This review discusses techniques used to isolate such mimotopes, to confirm their specificity, and to characterize peptide epitopes. Moreover there are direct practical applications to deriving epitopes or mimotopes by sequence, notably the development of new diagnostic reagents, or therapeutic agonist or antagonist molecules. The techniques developed for mapping of antibody epitopes are applicable to probing the origins of autoimmune diseases and certain cancers by identifying "immunofootprints" of unknown initiating agents, as we discuss herein, and are directly applicable to examination of a wider range of receptor-ligand interactions.

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