Li Bingbing X, Xiao Xiangshu
Program in Chemical Biology, Department of Chemical Physiology and Biochemistry, Oregon Health & Science University, Portland, Oregon.
Knight Cancer Institute, Oregon Health & Science University, Portland, Oregon.
Curr Protoc. 2025 May;5(5):e70146. doi: 10.1002/cpz1.70146.
This article describes a robust method for dual labeling of newly synthesized proteins and existing proteins. Assessing the properties of individual newly synthesized proteins from the bulk proteome is challenging due to difficulty in specifically isolating them. Previous methods such as non-natural amino acid labeling, isotope-labeled amino acid labeling, and puromycin labeling are effective for ensemble measurements. However, these existing methods do not support live-cell tracking or dynamic studies for a specific target protein. We designed a chemical genetics-based method for selective labeling of existing and newly synthesized proteins (-SLENP). Using nuclear lamin A (LA) tagged with a HaloTag (HaloTag-LA) as an exemplar protein and various Halo ligands, we describe -SLENP for labeling existing proteins and newly synthesized proteins. This approach can label these proteins either one at a time or dually in the same live cell. This method holds great potential for broader applications to study any given protein of interest.©2025 Wiley Periodicals LLC. Basic Protocol 1: -SLENP labeling using clickable Halo ligands Basic Protocol 2: -SLENP labeling using fluorescent Halo ligands.
本文描述了一种用于对新合成蛋白质和现有蛋白质进行双重标记的可靠方法。由于难以特异性分离单个新合成蛋白质,从整体蛋白质组中评估其特性具有挑战性。诸如非天然氨基酸标记、同位素标记氨基酸标记和嘌呤霉素标记等先前方法对于整体测量是有效的。然而,这些现有方法不支持对特定目标蛋白质进行活细胞追踪或动态研究。我们设计了一种基于化学遗传学的方法,用于选择性标记现有蛋白质和新合成蛋白质(-SLENP)。使用标记有卤代标签(HaloTag-LA)的核纤层蛋白A(LA)作为示例蛋白以及各种卤代配体,我们描述了用于标记现有蛋白质和新合成蛋白质的-SLENP。这种方法可以在同一个活细胞中一次标记一种蛋白质或同时进行双重标记。该方法在更广泛应用于研究任何感兴趣的特定蛋白质方面具有巨大潜力。©2025威利期刊有限责任公司。基本方案1:使用可点击卤代配体进行-SLENP标记 基本方案2:使用荧光卤代配体进行-SLENP标记。