Institute of Biophysics, Federal Research Center "Krasnoyarsk Science Center SB RAS", Krasnoyarsk 660036, Russia.
Siberian Federal University, Krasnoyarsk 660041, Russia.
Bioconjug Chem. 2023 Jul 19;34(7):1282-1289. doi: 10.1021/acs.bioconjchem.3c00165. Epub 2023 Jun 19.
NanoLuc (NLuc) is an artificial coelenterazine-dependent luciferase generated from the deep-sea shrimp . Its peculiar properties─small size and long-lasting bright bioluminescence triggered with the synthetic substrate furimazine─have made this enzyme popular as a reporter in a variety of analytical systems. Basically, to ensure the assay specificity, NLuc is genetically fused to the polypeptide with affinity for the corresponding target. The approach, however, has a limitation for non-protein biospecific molecules, thus forcing the production of biospecific luciferase derivatives via chemical conjugation. Unfortunately, it yields a heterogeneous product and often results in the loss of a significant part of bioluminescence activity. Here, we report on NLuc site-directed conjugation by combining these two approaches: several luciferase derivatives, genetically extended with hexapeptides carrying a unique Cys residue, were obtained, and the variant with activity equal to that of the intact NLuc was found. Biospecific molecules of the most commonly used types (low-weight hapten, oligonucleotide, antibody, and DNA aptamer) were chemically attached to this NLuc variant through the unique Cys using an orthogonal conjugation approach. The resulting conjugates were tested as labels in the bioluminescence assay and were shown to detect the corresponding molecular targets (e.g., cardiac markers) with high sensitivity.
NanoLuc (NLuc) 是一种人工腔肠素依赖性荧光素酶,由深海虾产生。其独特的特性——体积小、持久的生物发光,可由合成底物 furimazine 触发——使其成为各种分析系统中的报告酶而广受欢迎。基本上,为了确保测定的特异性,NLuc 通过遗传融合到与相应靶标具有亲和力的多肽上。然而,该方法对于非蛋白质生物特异性分子有局限性,因此需要通过化学偶联来生产生物特异性荧光酶衍生物。不幸的是,这会产生不均匀的产物,并且经常导致生物发光活性的很大一部分丧失。在这里,我们报告了通过结合这两种方法进行 NLuc 定点偶联:获得了几个遗传扩展带有独特 Cys 残基的六肽的荧光酶衍生物,并且发现具有与完整 NLuc 相当的活性的变体。通过正交偶联方法,将最常用类型的生物特异性分子(低分子量半抗原、寡核苷酸、抗体和 DNA 适体)通过独特的 Cys 化学连接到这种 NLuc 变体上。所得缀合物被用作生物发光测定中的标记,并显示出对相应分子靶标(例如心脏标志物)的高灵敏度检测。