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临近连接分析:蛋白质组学工具盒中的新成员。

Proximity ligation assays: a recent addition to the proteomics toolbox.

机构信息

Department of Genetics and Pathology, Rudbeck laboratory, University of Uppsala, Uppsala, Sweden.

出版信息

Expert Rev Proteomics. 2010 Jun;7(3):401-9. doi: 10.1586/epr.10.10.

Abstract

An essential skill for every researcher is to learn how to select and apply the most appropriate methods for the questions they are trying to answer. With the extensive variety of methods available, it is increasingly important to scrutinize the advantages and disadvantages of these techniques prior to making a decision on which to use. In this article, we describe an approach to evaluate methods by reducing them into subcomponents. This is exemplified by a brief description of some commonly used proteomics methods. The same approach can also be used in method development by rearranging subcomponents in order to create new methods, as demonstrated with the development of proximity ligation assays (PLAs). PLA is a method as designed in our laboratory for detection of proteins, protein-protein interactions and post-translational modifications. Fundamentally, protein-recognition events are converted into detectable DNA molecules. The technique uses protein-DNA conjugates as binders for the targets of interest. Binding of two or more conjugates to the target results in assembly of an assay-specific DNA molecule. Subsequent amplification of the DNA molecule generates a signal that can be detected using PCR, for detection of minute amounts of proteins in serum, or standard fluorescence microscopy for detection of protein-protein interactions in tissue sections. Lastly, we apply the approach of recombining subcomponents to develop a few novel hypothetical methods hoping this might stimulate the readers to utilize this approach themselves.

摘要

对于每一位研究人员来说,掌握如何选择和应用最合适的方法来回答他们所提出的问题是一项基本技能。面对种类繁多的方法,在决定使用哪种方法之前,仔细检查这些技术的优缺点变得愈发重要。在本文中,我们介绍了一种通过将方法分解为子组件来评估方法的方法。通过简要描述一些常用的蛋白质组学方法来说明这一点。同样的方法也可以用于方法开发,通过重新排列子组件来创建新的方法,如我们实验室开发的邻近连接分析(PLA)方法。PLA 是我们实验室设计的一种用于检测蛋白质、蛋白质-蛋白质相互作用和翻译后修饰的方法。从根本上讲,蛋白质识别事件被转化为可检测的 DNA 分子。该技术使用蛋白质-DNA 缀合物作为感兴趣目标的结合物。两个或更多缀合物与目标结合会导致特定于测定的 DNA 分子的组装。随后对 DNA 分子进行扩增,生成可通过 PCR 检测的信号,用于检测血清中微量蛋白质,或通过标准荧光显微镜检测组织切片中的蛋白质-蛋白质相互作用。最后,我们应用重新组合子组件的方法来开发一些新的假设方法,希望这能激发读者自己利用这种方法。

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