Graduate School of Science and Engineering, Saitama University, 255 Shimo-Okubo, Sakura-ku, Saitama, 338-8570, Japan.
Department of Chemistry, Wake Forest University, Winston-Salem, North Carolina, 27109, United States.
Sci Rep. 2019 Jul 22;9(1):10566. doi: 10.1038/s41598-019-46955-6.
In an effort to develop an analytical method capable of finding new metalloproteins, this is the first report of a new diagonal gel electrophoresis method to isolate and identify metalloproteins, based on the molecular recognition of holo- and apo-metalloproteins (metalbound and -free forms, respectively) by CBB G-250 dye and employing metal ion contaminant sweeping-blue native-polyacrylamide gel electrophoresis (MICS-BN-PAGE). The difference in electrophoretic mobilities between holo- and apo-forms was exaggerated as a result of interactions between the metalloproteins and the dye with no metal ion dissociation. The different binding modes of proteins with CBB G-250 dye, primarily related to hydrogen bonding, were confirmed by capillary zone electrophoresis (CZE) and molecular docking simulations. Due to in-gel holo/apo conversion between the first and second dimensions of PAGE, holo-metalloproteins in the original sample were completely isolated as spots off the diagonal line in the second dimension of PAGE. To prove the high efficiency of this method for metalloprotein analysis, we successfully identified a copper-binding protein from a total bacterial soluble extract for the first time.
为了开发一种能够发现新金属蛋白的分析方法,本研究首次报道了一种新的对角线凝胶电泳方法,该方法基于 CBB G-250 染料对全金属蛋白和脱金属蛋白(金属结合和非结合形式)的分子识别,并采用金属离子污染物清除-蓝色 native-聚丙烯酰胺凝胶电泳(MICS-BN-PAGE)。由于金属蛋白与染料之间没有金属离子解离,因此全金属蛋白和脱金属蛋白之间的电泳迁移率差异被夸大。通过毛细管区带电泳(CZE)和分子对接模拟证实了蛋白质与 CBB G-250 染料的不同结合模式,主要与氢键有关。由于 PAGE 的第一维和第二维之间的胶内全金属/脱金属转化,原始样品中的全金属蛋白完全作为第二维对角线以外的斑点被分离出来。为了证明该方法对金属蛋白分析的高效性,我们首次成功地从总细菌可溶性提取物中鉴定出一种铜结合蛋白。