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当前抗原抗体相互作用精细定位的方法。

Current approaches to fine mapping of antigen-antibody interactions.

机构信息

Discovery Sciences, AstraZeneca, Macclesfield, Cheshire, UK.

出版信息

Immunology. 2014 Aug;142(4):526-35. doi: 10.1111/imm.12284.

Abstract

A number of different methods are commonly used to map the fine details of the interaction between an antigen and an antibody. Undoubtedly the method that is now most commonly used to give details at the level of individual amino acids and atoms is X-ray crystallography. The feasibility of undertaking crystallographic studies has increased over recent years through the introduction of automation, miniaturization and high throughput processes. However, this still requires a high level of sophistication and expense and cannot be used when the antigen is not amenable to crystallization. Nuclear magnetic resonance spectroscopy offers a similar level of detail to crystallography but the technical hurdles are even higher such that it is rarely used in this context. Mutagenesis of either antigen or antibody offers the potential to give information at the amino acid level but suffers from the uncertainty of not knowing whether an effect is direct or indirect due to an effect on the folding of a protein. Other methods such as hydrogen deuterium exchange coupled to mass spectrometry and the use of short peptides coupled with ELISA-based approaches tend to give mapping information over a peptide region rather than at the level of individual amino acids. It is quite common to use more than one method because of the limitations and even with a crystal structure it can be useful to use mutagenesis to tease apart the contribution of individual amino acids to binding affinity.

摘要

有许多不同的方法通常用于绘制抗原和抗体之间相互作用的细节。现在,最常用于提供单个氨基酸和原子水平详细信息的方法无疑是 X 射线晶体学。近年来,通过自动化、小型化和高通量处理的引入,开展晶体学研究的可行性有所提高。然而,这仍然需要高度的复杂性和费用,并且当抗原不适于结晶时,不能使用该方法。核磁共振波谱提供了与晶体学相似的细节水平,但技术障碍更高,因此很少在这种情况下使用。抗原或抗体的诱变提供了在氨基酸水平上提供信息的潜力,但由于不知道由于蛋白质折叠的影响是直接的还是间接的,因此存在不确定性。其他方法,如与质谱耦联的氢氘交换和与 ELISA 方法偶联的短肽,往往在肽区域而不是单个氨基酸水平上提供作图信息。由于存在局限性,通常会使用多种方法,即使有晶体结构,使用诱变来分离单个氨基酸对结合亲和力的贡献也很有用。

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