Jiang Hanjie, D'Agostino Gabriel D, Cole Philip A, Dempsey Daniel R
Division of Genetics, Brigham and Women's Hospital, Departments of Medicine and Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, MA, United States; Department of Pharmacology and Molecular Sciences, Johns Hopkins School of Medicine, Baltimore, MD, United States.
Division of Genetics, Brigham and Women's Hospital, Departments of Medicine and Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, MA, United States.
Methods Enzymol. 2020;639:333-353. doi: 10.1016/bs.mie.2020.04.018. Epub 2020 Apr 28.
In order to gain detailed insight into the biochemical behavior of proteins, researchers have developed chemical tools to incorporate new functionality into proteins beyond the canonical 20 amino acids. Important considerations regarding effective chemical modification of proteins include chemoselectivity, near stoichiometric labeling, and reaction conditions that maintain protein stability. Taking these factors into account, we discuss an N-terminal labeling strategy that employs a simple two-step "one-pot" method using N-hydroxysuccinimide (NHS) esters. The first step converts a R-NHS ester into a more chemoselective R-thioester. The second step reacts the in situ generated R-thioester with a protein that harbors an N-terminal cysteine to generate a new amide bond. This labeling reaction is selective for the N-terminus with high stoichiometry. Herein, we provide a detailed description of this method and further highlight its utility with a large protein (>100kDa) and labeling with a commonly used cyanine dye.
为了深入了解蛋白质的生化行为,研究人员开发了化学工具,以将新功能引入到除标准的20种氨基酸之外的蛋白质中。关于蛋白质有效化学修饰的重要考虑因素包括化学选择性、接近化学计量的标记以及维持蛋白质稳定性的反应条件。考虑到这些因素,我们讨论一种N端标记策略,该策略采用一种简单的两步“一锅法”,使用N-羟基琥珀酰亚胺(NHS)酯。第一步将R-NHS酯转化为化学选择性更高的R-硫酯。第二步使原位生成的R-硫酯与带有N端半胱氨酸的蛋白质反应,生成新的酰胺键。这种标记反应对N端具有选择性,且化学计量比高。在此,我们详细描述了该方法,并通过一个大于100kDa的大蛋白以及用常用的花菁染料进行标记进一步突出了其效用。