Kottegoda Sumith, Aoto Phillip C, Sims Christopher E, Allbritton Nancy L
Department of Chemistry, University of North Carolina, Chapel Hill, North Carolina 27599-3290, USA.
Anal Chem. 2008 Jul 15;80(14):5358-66. doi: 10.1021/ac8003242. Epub 2008 Jun 4.
Biarsenical dyes complexed to tetracysteine motifs have proven to be highly useful fluorescent dyes in labeling specific cellular proteins for microscopic imaging. Their many advantages include membrane permeability, relatively small size, stoichiometric labeling, high affinity, and an assortment of excitation/emission wavelengths. The goal of the current study was to determine whether the biarsenical labeling scheme could be extended to fluorescent detection of analytes in capillary electrophoresis. Recombinant protein or synthesized peptides containing the optimized tetracysteine motif "-C-C-P-G-C-C-" were labeled with biarsenical dyes and then analyzed by micellar electrokinetic capillary chromatography (MEKC). The biarsenical-tetracysteine complex was stable and remained fluorescent under standard MEKC conditions for peptide and protein separations. The detection limit following electrophoresis in a capillary was less than 3 x 10(-20) mol with a simple laser-induced fluorescence system. A mixture of multiple biarsenical-labeled peptides and a protein were easily resolved. Demonstrating that the label did not interfere with bioactivity, a peptide-based enzyme substrate conjugated to the tetracysteine motif and labeled with a biarsenical dye retained its ability to be phosphorylated by the parent kinase. The feasibility of using this label for chemical cytometry experiments was shown by intracellular labeling and subsequent analysis of a recombinant protein possessing the tetracysteine motif expressed in living cells. The extension of the biarsenical-tetracysteine tag to fluorescent labeling of peptides and proteins in chemical separations is a valuable addition to biochemical and cell-based investigations.
与四半胱氨酸基序复合的双砷染料已被证明是用于标记特定细胞蛋白以进行显微成像的高效荧光染料。它们的诸多优点包括膜通透性、相对较小的尺寸、化学计量标记、高亲和力以及多种激发/发射波长。本研究的目的是确定双砷标记方案是否可扩展至毛细管电泳中分析物的荧光检测。含有优化的四半胱氨酸基序“-C-C-P-G-C-C-”的重组蛋白或合成肽用双砷染料进行标记,然后通过胶束电动毛细管色谱法(MEKC)进行分析。双砷 - 四半胱氨酸复合物在标准MEKC条件下对于肽和蛋白质分离是稳定的且保持荧光性。使用简单的激光诱导荧光系统,毛细管电泳后的检测限小于3×10⁻²⁰摩尔。多种双砷标记的肽和一种蛋白质的混合物很容易被分离。与四半胱氨酸基序偶联并用双砷染料标记的基于肽的酶底物保留了被亲本激酶磷酸化的能力,证明该标记不干扰生物活性。通过对活细胞中表达的具有四半胱氨酸基序的重组蛋白进行细胞内标记及后续分析,展示了将此标记用于化学细胞术实验的可行性。双砷 - 四半胱氨酸标签扩展至化学分离中肽和蛋白质的荧光标记,是对生化和基于细胞的研究的一项有价值的补充。