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用于膜蛋白复合物凝胶内功能测定和荧光研究的高分辨率清晰天然电泳。

High resolution clear native electrophoresis for in-gel functional assays and fluorescence studies of membrane protein complexes.

作者信息

Wittig Ilka, Karas Michael, Schägger Hermann

机构信息

Zentrum der Biologischen Chemie, Molekulare Bioenergetik, Centre of Excellence Macromolecular Complexes, Johann Wolfgang Goethe-Universität Frankfurt, D-60590 Frankfurt am Main, Germany.

出版信息

Mol Cell Proteomics. 2007 Jul;6(7):1215-25. doi: 10.1074/mcp.M700076-MCP200. Epub 2007 Apr 9.

Abstract

Clear native electrophoresis and blue native electrophoresis are microscale techniques for the isolation of membrane protein complexes. The Coomassie Blue G-250 dye, used in blue native electrophoresis, interferes with in-gel fluorescence detection and in-gel catalytic activity assays. This problem can be overcome by omitting the dye in clear native electrophoresis. However, clear native electrophoresis suffers from enhanced protein aggregation and broadening of protein bands during electrophoresis and therefore has been used rarely. To preserve the advantages of both electrophoresis techniques we substituted Coomassie dye in the cathode buffer of blue native electrophoresis by non-colored mixtures of anionic and neutral detergents. Like Coomassie dye, these mixed micelles imposed a charge shift on the membrane proteins to enhance their anodic migration and improved membrane protein solubility during electrophoresis. This improved clear native electrophoresis offers a high resolution of membrane protein complexes comparable to that of blue native electrophoresis. We demonstrate the superiority of high resolution clear native electrophoresis for in-gel catalytic activity assays of mitochondrial complexes I-V. We present the first in-gel histochemical staining protocol for respiratory complex III. Moreover we demonstrate the special advantages of high resolution clear native electrophoresis for in-gel detection of fluorescent labeled proteins labeled by reactive fluorescent dyes and tagged by fluorescent proteins. The advantages of high resolution clear native electrophoresis make this technique superior for functional proteomics analyses.

摘要

清亮原生电泳和蓝色原生电泳是用于分离膜蛋白复合物的微量技术。蓝色原生电泳中使用的考马斯亮蓝G - 250染料会干扰凝胶内荧光检测和凝胶内催化活性测定。在清亮原生电泳中省略该染料可克服此问题。然而,清亮原生电泳在电泳过程中存在蛋白质聚集增强和蛋白条带变宽的问题,因此很少使用。为了保留两种电泳技术的优点,我们用阴离子和中性去污剂的无色混合物替代了蓝色原生电泳阴极缓冲液中的考马斯染料。与考马斯染料一样,这些混合胶束使膜蛋白产生电荷转移,以增强其阳极迁移并改善电泳过程中膜蛋白的溶解性。这种改进的清亮原生电泳对膜蛋白复合物具有与蓝色原生电泳相当的高分辨率。我们证明了高分辨率清亮原生电泳在线粒体复合物I - V凝胶内催化活性测定中的优越性。我们提出了首个用于呼吸复合物III的凝胶内组织化学染色方案。此外,我们证明了高分辨率清亮原生电泳在凝胶内检测由反应性荧光染料标记并由荧光蛋白标记的荧光标记蛋白方面的特殊优势。高分辨率清亮原生电泳的优势使其在功能蛋白质组学分析中更具优越性。

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