Division of Biological and Environmental Sciences and Engineering, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia.
Division of Biological and Environmental Sciences and Engineering, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia.
J Biol Chem. 2020 Aug 21;295(34):12214-12223. doi: 10.1074/jbc.RA120.014132. Epub 2020 Jul 9.
The polyhistidine tag (His-tag) is one of the most popular protein tags used in the life sciences. Traditionally, the detection of His-tagged proteins relies on immunoblotting with anti-His antibodies. This approach is laborious for certain applications, such as protein purification, where time and simplicity are critical. The His-tag can also be directly detected by metal ion-loaded nickel-nitrilotriacetic acid-based chelator heads conjugated to fluorophores, which is a convenient alternative method to immunoblotting. Typically, such chelator heads are conjugated to either green or red fluorophores, the detection of which requires specialized excitation sources and detection systems. Here, we demonstrate that post-run staining is ideal for His-tag detection by metal ion-loaded and fluorescently labeled chelator heads in PAGE and blot membranes. Additionally, by comparing the performances of different chelator heads, we show how differences in microscopic affinity constants translate to macroscopic differences in the detection limits in environments with limited diffusion, such as PAGE. On the basis of these results, we devise a simple approach, called UVHis-PAGE, that uses metal ion-loaded and fluorescently labeled chelator heads to detect His-tagged proteins in PAGE and blot membranes. Our method uses a UV transilluminator as an excitation source, and the results can be visually inspected by the naked eye.
多组氨酸标签(His 标签)是生命科学中最常用的蛋白质标签之一。传统上,His 标记蛋白的检测依赖于抗 His 抗体的免疫印迹。对于某些应用,如蛋白质纯化,这种方法既繁琐又耗时,因为在这些应用中,时间和简单性至关重要。His 标签也可以通过与荧光团偶联的负载金属离子的镍-氮二乙酸基螯合剂头直接检测,这是免疫印迹的一种方便替代方法。通常,这种螯合剂头与绿色或红色荧光团偶联,检测需要专门的激发源和检测系统。在这里,我们证明了在 PAGE 和印迹膜中,负载金属离子的荧光标记螯合剂头在运行后染色是 His 标签检测的理想方法。此外,通过比较不同螯合剂头的性能,我们展示了在扩散受限的环境(如 PAGE)中,微观亲和力常数的差异如何转化为检测限的宏观差异。基于这些结果,我们设计了一种简单的方法,称为 UVHis-PAGE,该方法使用负载金属离子的荧光标记螯合剂头在 PAGE 和印迹膜中检测 His 标记蛋白。我们的方法使用紫外线透射仪作为激发源,结果可以用肉眼进行直观检查。