Verhaegent Monique, Christopoulos Theodore K
Department of Chemistry and Biochemistry, University of Windsor, Ontario, Canada.
Anal Chem. 2002 Sep 1;74(17):4378-85. doi: 10.1021/ac025742k.
The cDNA for Gaussia luciferase (GLuc), the enzyme responsible for the bioluminescent reaction of the marine copepod Gaussia princeps, has been cloned recently. GLuc (MW = 19 900) catalyzes the oxidative decarboxylation of coelenterazine to produce coelenteramide and light. We report the first quantitative anaytical study of GLuc and examine its potential as a new reporter for DNA hybridization. A plasmid encoding both a biotin acceptor peptide-GLuc fusion protein as well as the enzyme biotin protein ligase (BPL) is engineered by using GLuc cDNA as a starting template. BPL catalyzes the covalent attachment of a single biotin to the fusion protein in vivo. Purification of GLuc is then accomplished by affinity chromatography using immobilized monomeric avidin. Moreover, the in vivo biotinylation enables subsequent complexation of GLuc with streptavidin (SA), thereby avoiding chemical conjugation reactions that are known to inactivate luciferases. Purified GLuc can be detected down to 1 amol with a signal-to-background ratio of 2 and a linear range extending over 5 orders of magnitude. The background luminescence of coelenterazine is the main limiting factor for even higher detectability of GLuc. Furthermore, the GLuc-SA complex is used as a detection reagent in a microtiter well-based DNA hybridization assay. The analytical range extends from 1.6 to 800 pmol/L of target DNA. Biotinylated GLuc produced from 1 L of bacterial culture is sufficient for 150,000 hybridization assays.
海洋桡足类动物高斯哲水蚤生物发光反应所涉及的酶——高斯荧光素酶(GLuc)的互补DNA(cDNA)最近已被克隆出来。GLuc(分子量 = 19900)催化腔肠素的氧化脱羧反应,生成腔肠酰胺并发出光。我们报道了对GLuc的首次定量分析研究,并考察了其作为DNA杂交新报告分子的潜力。以GLuc cDNA为起始模板构建了一个编码生物素受体肽 - GLuc融合蛋白以及酶生物素蛋白连接酶(BPL)的质粒。BPL在体内催化单个生物素与融合蛋白的共价连接。然后通过使用固定化单体抗生物素蛋白的亲和色谱法完成GLuc的纯化。此外,体内生物素化使得GLuc随后能够与链霉亲和素(SA)络合,从而避免了已知会使荧光素酶失活的化学偶联反应。纯化后的GLuc在信号背景比为2且线性范围跨越5个数量级的情况下,检测下限可达1阿托摩尔。腔肠素的背景发光是限制GLuc实现更高检测灵敏度的主要因素。此外,GLuc - SA复合物被用作基于微孔板的DNA杂交检测中的检测试剂。分析范围为目标DNA的1.6至800皮摩尔/升。从1升细菌培养物中产生的生物素化GLuc足以进行150,000次杂交检测。