Gallagher Sarah S, Sable Julia E, Sheetz Michael P, Cornish Virginia W
Department of Chemistry, Columbia University, New York, NY 10027, USA.
ACS Chem Biol. 2009 Jul 17;4(7):547-56. doi: 10.1021/cb900062k.
Chemical tags for live cell imaging are emerging as viable alternatives to the fluorescent proteins for labeling proteins with small molecule probes. Among reported chemical tags, trimethoprim (TMP)-tag stands out for having sufficient cell permeability and selectivity to allow imaging of intracellular proteins. TMP-tag provides a noncovalent label in which the protein of interest is fused to E. coli dihydrofolate reductase (DHFR) and then labeled with a cell-permeable TMP-probe heterodimer. To complement the utility of the noncovalent TMP-tag, we sought to render the TMP-tag covalent for applications such as single-molecule tracking and pulse-chase labeling that would benefit from a more permanent modification. On the basis of the long-standing use of proximity-induced reactivity for irreversible inhibitor design and its more recent application to in vitro chemical biology tools, we designed an eDHFR variant with a unique cysteine residue positioned to react with an acrylamide electrophile installed on the TMP-probe label. In vitro experiments show that the eDHFR:L28C nucleophile reacts rapidly and quantitatively with the TMP-acrylamide-probe. Most significantly, the balance in reactivity provided by the acrylamide electrophile allows intracellular proteins tagged with eDHFR:L28C to be labeled with a TMP-acrylamide-fluorescein heterotrimer in live cells with minimal background. Thus, the TMP electrophile described here can be used immediately as a covalent chemical tag in live cells. Moreover, proximity-induced reactivity is shown to be sufficiently selective for use in a living cell, suggesting a general approach for the development of orthogonal covalent chemical tags from existing noncovalent ligand-protein pairs.
用于活细胞成像的化学标签正逐渐成为用小分子探针标记蛋白质的荧光蛋白的可行替代方案。在已报道的化学标签中,甲氧苄啶(TMP)标签因其具有足够的细胞通透性和选择性,能够对细胞内蛋白质进行成像而脱颖而出。TMP标签提供了一种非共价标记,其中目标蛋白质与大肠杆菌二氢叶酸还原酶(DHFR)融合,然后用细胞可渗透的TMP-探针异二聚体进行标记。为了补充非共价TMP标签的实用性,我们试图使TMP标签共价化,用于单分子追踪和脉冲追踪标记等应用,这些应用将受益于更持久的修饰。基于长期以来将邻近诱导反应性用于不可逆抑制剂设计及其最近在体外化学生物学工具中的应用,我们设计了一种eDHFR变体,其具有一个独特的半胱氨酸残基,该残基的位置可与安装在TMP-探针标签上的丙烯酰胺亲电试剂发生反应。体外实验表明,eDHFR:L28C亲核试剂与TMP-丙烯酰胺-探针快速定量反应。最重要的是,丙烯酰胺亲电试剂提供的反应性平衡使得用eDHFR:L28C标记的细胞内蛋白质能够在活细胞中用TMP-丙烯酰胺-荧光素异三聚体进行标记,背景最小。因此,本文所述的TMP亲电试剂可立即用作活细胞中的共价化学标签。此外,邻近诱导反应性在活细胞中的使用具有足够的选择性,这表明从现有的非共价配体-蛋白质对开发正交共价化学标签的一般方法。