Watkins Rex W, Lavis Luke D, Kung Vanessa M, Los Georgyi V, Raines Ronald T
Department of Biochemistry, University of Wisconsin-Madison, 433 Babcock Drive, Madison, WI 53706, USA.
Org Biomol Chem. 2009 Oct 7;7(19):3969-75. doi: 10.1039/b907664f. Epub 2009 Jul 31.
Haloalkane dehalogenase (HD) catalyzes the hydrolysis of haloalkanes via a covalent enzyme-substrate intermediate. Fusing a target protein to an HD variant that cannot hydrolyze the intermediate enables labeling of the target protein with a haloalkane in cellulo. The utility of extant probes is hampered, however, by background fluorescence as well as limited membrane permeability. Here, we report on the synthesis and use of a fluorogenic affinity label that, after unmasking by an intracellular esterase, labels an HD variant in cellulo. Labeling is rapid and specific, as expected from the reliance upon enzymic catalysts and the high membrane permeance of the probe both before and after unmasking. Most notably, even high concentrations of the fluorogenic affinity label cause minimal background fluorescence without a need to wash the cells. We envision that such fluorogenic affinity labels, which enlist catalysis by two cellular enzymes, will find utility in pulse-chase experiments, high-content screening, and numerous other protocols.
卤代烷脱卤酶(HD)通过共价酶-底物中间体催化卤代烷的水解反应。将目标蛋白与无法水解该中间体的HD变体融合,可在细胞内用卤代烷标记目标蛋白。然而,现有的探针存在背景荧光以及膜通透性有限等问题,限制了其应用。在此,我们报道了一种荧光亲和标记物的合成与应用,该标记物经细胞内酯酶去掩蔽后,能在细胞内标记HD变体。正如依赖酶催化剂以及去掩蔽前后探针的高膜通透性所预期的那样,标记过程快速且具有特异性。最值得注意的是,即使使用高浓度的荧光亲和标记物,也只会产生极少的背景荧光,无需对细胞进行洗涤。我们设想,这种借助两种细胞酶催化作用的荧光亲和标记物,将在脉冲追踪实验、高内涵筛选以及众多其他实验方案中发挥作用。