Dept. of Cellular Biochemistry, Max Planck Institute for Biophysical Chemistry, Am Fassberg 11, 37077 Göttingen, Germany.
Mol Cell Biol. 2011 Jul;31(13):2667-82. doi: 10.1128/MCB.05266-11. Epub 2011 May 2.
More than 200 proteins associate with human spliceosomes, but little is known about their relative abundances in a given spliceosomal complex. Here we describe a novel two-dimensional (2D) electrophoresis method that allows separation of high-molecular-mass proteins without in-gel precipitation and thus without loss of protein. Using this system coupled with mass spectrometry, we identified 171 proteins altogether on 2D maps of stage-specific spliceosomal complexes. By staining with a fluorescent dye with a wide linear intensity range, we could quantitate and categorize proteins as present in high, moderate, or low abundance. Affinity-purified human B, B(act), and C complexes contained 69, 63, and 72 highly/moderately abundant proteins, respectively. The recruitment and release of spliceosomal proteins were followed based on their abundances in A, B, B(act), and C spliceosomal complexes. Staining with a phospho-specific dye revealed that approximately one-third of the proteins detected in human spliceosomal complexes by 2D gel analyses are phosphorylated. The 2D gel electrophoresis system described here allows for the first time an objective view of the relative abundances of proteins present in a particular spliceosomal complex and also sheds additional light on the spliceosome's compositional dynamics and the phosphorylation status of spliceosomal proteins at specific stages of splicing.
超过 200 种蛋白质与人类剪接体相关联,但对于给定剪接体复合物中它们的相对丰度知之甚少。在这里,我们描述了一种新颖的二维(2D)电泳方法,该方法允许在不进行胶内沉淀的情况下分离高分子质量蛋白质,因此不会损失蛋白质。使用该系统结合质谱法,我们总共在特定阶段剪接体复合物的 2D 图谱上鉴定了 171 种蛋白质。通过用具有宽线性强度范围的荧光染料染色,我们可以定量和分类蛋白质,分为高丰度、中丰度或低丰度。亲和纯化的人类 B、B(act)和 C 复合物分别含有 69、63 和 72 种高度/中度丰富的蛋白质。根据 A、B、B(act)和 C 剪接体复合物中蛋白质的丰度,跟踪剪接体蛋白的募集和释放。用磷酸特异性染料染色表明,通过 2D 凝胶分析在人类剪接体复合物中检测到的大约三分之一的蛋白质被磷酸化。这里描述的 2D 凝胶电泳系统首次允许客观地观察特定剪接体复合物中存在的蛋白质的相对丰度,并且还进一步揭示了剪接体的组成动态和剪接体蛋白在特定剪接阶段的磷酸化状态。