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蛋白质芯片的开发:一种基于质谱的方法,采用免疫亲和方法定量蛋白质表达和修饰水平。

Development of a protein chip: a MS-based method for quantitation of protein expression and modification levels using an immunoaffinity approach.

作者信息

Warren Erin N, Elms Phillip J, Parker Carol E, Borchers Christoph H

机构信息

Department of Biochemistry & Biophysics, University of North Carolina at Chapel Hill, CB# 7260, Chapel Hill, North Carolina 27599-7260, USA.

出版信息

Anal Chem. 2004 Jul 15;76(14):4082-92. doi: 10.1021/ac049880g.

Abstract

Protein chip technology permits analysis of the expression and modification status of numerous targeted proteins within a single experiment, mainly through the use of antibody-based microarrays. Despite recent improvements in these protein chips, their applications are still limited for a variety of reasons, which include technical challenges in fabrication of the antibody chips as well as the very low specificity achieved by current detection methods. We have developed a unique approach for relative and/or absolute quantitation of protein expression and modification based on the capture of epitope peptides on affinity beads, which can be used to develop a mass-spectrometry-based protein chip technology. This new method, which utilizes antibodies immobilized on beads for the capture of target peptides, instead of proteins, eliminates many of the problems previously associated with protein chips. We present here several proof-of-principle experiments examining model peptides by this technique. These experiments show that the method is capable of (i). detecting peptides bound to a single antibody bead, (ii). detecting peptides at low (fmol) levels, (iii). producing MS/MS data of suitable quality for protein identification via database searching or de novo sequencing, (iv). quantitating peptides affinity-bound to antibody beads, (v). specifically detecting target peptides in complex mixtures over wide dynamic ranges, and (vi) is compatible with a microarray format for high-throughput analysis. Because our novel method uses antibody beads instead of a derivatized capture surface, and peptides instead of proteins for affinity capture, it can overcome many of the pitfalls of previous protein chip fabrications. Therefore, this method offers an improved approach to protein chip technology that should prove useful for diagnostics and drug development applications.

摘要

蛋白质芯片技术主要通过使用基于抗体的微阵列,能够在单个实验中分析众多目标蛋白质的表达和修饰状态。尽管这些蛋白质芯片最近有所改进,但由于各种原因,其应用仍然有限,这些原因包括抗体芯片制造中的技术挑战以及当前检测方法所达到的极低特异性。我们已经开发出一种独特的方法,基于在亲和珠上捕获表位肽来对蛋白质表达和修饰进行相对和/或绝对定量,该方法可用于开发基于质谱的蛋白质芯片技术。这种新方法利用固定在珠子上的抗体来捕获目标肽而非蛋白质,消除了先前与蛋白质芯片相关的许多问题。我们在此展示了几个通过该技术检测模型肽的原理验证实验。这些实验表明该方法能够:(i)检测与单个抗体珠结合的肽;(ii)在低(飞摩尔)水平检测肽;(iii)产生质量适合通过数据库搜索或从头测序进行蛋白质鉴定的串联质谱数据;(iv)对亲和结合到抗体珠上的肽进行定量;(v)在宽动态范围内特异性检测复杂混合物中的目标肽;以及(vi)与用于高通量分析的微阵列形式兼容。由于我们的新方法使用抗体珠而非衍生化的捕获表面,并且使用肽而非蛋白质进行亲和捕获,它可以克服先前蛋白质芯片制造中的许多缺陷。因此,该方法为蛋白质芯片技术提供了一种改进的途径,应该对诊断和药物开发应用有用。

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