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一种用于细胞外蛋白相互作用发现的分泌蛋白微阵列平台。

A secreted protein microarray platform for extracellular protein interaction discovery.

机构信息

Department of Protein Chemistry, Genentech, South San Francisco, CA 94080, USA.

出版信息

Anal Biochem. 2012 Jan 15;420(2):127-38. doi: 10.1016/j.ab.2011.09.017. Epub 2011 Sep 21.

DOI:10.1016/j.ab.2011.09.017
PMID:21982860
Abstract

Characterization of the extracellular protein interactome has lagged far behind that of intracellular proteins, where mass spectrometry and yeast two-hybrid technologies have excelled. Improved methods for identifying receptor-ligand and extracellular matrix protein interactions will greatly accelerate biological discovery in cell signaling and cellular communication. These technologies must be able to identify low-affinity binding events that are often observed between membrane-bound coreceptor molecules during cell-cell or cell-extracellular matrix contact. Here we demonstrate that functional protein microarrays are particularly well-suited for high-throughput screening of extracellular protein interactions. To evaluate the performance of the platform, we screened a set of 89 immunoglobulin (Ig)-type receptors against a highly diverse extracellular protein microarray with 686 genes represented. To enhance detection of low-affinity interactions, we developed a rapid method to assemble bait Fc fusion proteins into multivalent complexes using protein A microbeads. Based on these screens, we developed a statistical methodology for hit calling and identification of nonspecific interactions on protein microarrays. We found that the Ig receptor interactions identified using our methodology are highly specific and display minimal off-target binding, resulting in a 70% true-positive to false-positive hit ratio. We anticipate that these methods will be useful for a wide variety of functional protein microarray users.

摘要

细胞外蛋白相互作用组的特征描述远远落后于细胞内蛋白,而质谱和酵母双杂交技术在这方面表现出色。改进的方法来识别受体-配体和细胞外基质蛋白相互作用将极大地加速细胞信号转导和细胞通讯中的生物学发现。这些技术必须能够识别在细胞-细胞或细胞-细胞外基质接触过程中经常观察到的膜结合共受体分子之间的低亲和力结合事件。在这里,我们证明功能蛋白微阵列特别适合用于高通量筛选细胞外蛋白相互作用。为了评估该平台的性能,我们筛选了一组 89 种免疫球蛋白 (Ig) 型受体,针对一个具有 686 个基因的高度多样化的细胞外蛋白微阵列。为了增强对低亲和力相互作用的检测,我们开发了一种使用蛋白 A 微珠将诱饵 Fc 融合蛋白组装成多价复合物的快速方法。基于这些筛选,我们开发了一种用于在蛋白质微阵列上进行命中呼叫和识别非特异性相互作用的统计方法。我们发现,使用我们的方法鉴定的 Ig 受体相互作用具有高度特异性,并且显示出最小的非特异性结合,从而实现了 70%的真阳性到假阳性命中比。我们预计这些方法将对各种功能蛋白微阵列用户都有用。

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