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基于标记检测和蛋白质大小分辨的抗体阵列分析

Antibody array analysis with label-based detection and resolution of protein size.

作者信息

Wu Weiwei, Slåstad Heidi, de la Rosa Carrillo Daniel, Frey Tom, Tjønnfjord Geir, Boretti Eva, Aasheim Hans-Christian, Horejsi Vaclav, Lund-Johansen Fridtjof

机构信息

Rikshospitalet Medical Center and the University of Oslo, Oslo, Norway.

出版信息

Mol Cell Proteomics. 2009 Feb;8(2):245-57. doi: 10.1074/mcp.M800171-MCP200. Epub 2008 Sep 16.

Abstract

Elements from DNA microarray analysis, such as sample labeling and micro-spotting of capture reagents, have been successfully adapted to multiplex measurements of soluble cytokines. Application in cell biology is hampered by the lack of mono-specific antibodies and the fact that many proteins occur in complexes. Here, we incorporated a principle from Western blotting and resolved protein size as an additional parameter. Proteins from different cellular compartments were labeled and separated by size exclusion chromatography into 20 fractions. All were analyzed with replicate antibody arrays. The elution profiles of all antibody targets were compiled to color maps that resemble Western blots with bands of antibody reactivity across the size separation range (670-10 kDa). A new solid phase designed for processing in microwell plates was developed to handle the large number of samples. Antibodies were bound to protein G-coupled microspheres surface-labeled with 300 combinations of four fluorescent dyes. Fluorescence from particle color codes and the protein label were measured by high-speed flow cytometry. Cytoplasmic protein kinases were detected as bands near predictable elution points. For proteins with atypical elution characteristics or multiple contexts, two or more antibodies were used as internal references of specificity. Membrane proteins eluted near the void volume, and additional bands corresponding to intracellular forms were detected for several targets. Elution profiles of cyclin-dependent kinases (cdks), cyclins, and cyclin-dependent kinase inhibitors, were compatible with their occurrence in complexes that vary with the cell cycle phase and subcellular localization. A two-dimensional platform circumvents the need for mono-specific capture antibodies and extends the utility of antibody array analysis to studies of protein complexes.

摘要

DNA微阵列分析中的一些元素,如样品标记和捕获试剂的微点样,已成功应用于可溶性细胞因子的多重测量。由于缺乏单特异性抗体以及许多蛋白质以复合物形式存在,其在细胞生物学中的应用受到了阻碍。在此,我们引入了蛋白质印迹法的原理,并将蛋白质大小作为一个额外参数进行解析。来自不同细胞区室的蛋白质被标记,并通过尺寸排阻色谱法分离成20个组分。所有组分都用重复抗体阵列进行分析。将所有抗体靶标的洗脱图谱汇编成类似于蛋白质印迹的彩色图谱,在大小分离范围内(670 - 10 kDa)有抗体反应带。开发了一种专为微孔板处理设计的新固相,以处理大量样品。抗体与用四种荧光染料的300种组合进行表面标记的蛋白G偶联微球结合。通过高速流式细胞术测量来自颗粒颜色编码和蛋白质标记的荧光。细胞质蛋白激酶在可预测的洗脱点附近被检测为条带。对于具有非典型洗脱特征或多种情况的蛋白质,使用两种或更多种抗体作为特异性的内部参考。膜蛋白在空体积附近洗脱,并且对于几个靶标检测到对应于细胞内形式的额外条带。细胞周期蛋白依赖性激酶(cdks)、细胞周期蛋白和细胞周期蛋白依赖性激酶抑制剂的洗脱图谱与它们在随细胞周期阶段和亚细胞定位而变化的复合物中的存在情况相符。二维平台避免了对单特异性捕获抗体的需求,并将抗体阵列分析的效用扩展到蛋白质复合物的研究。

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