Tecnologico de Monterrey, The Institute for Obesity Research, Av. Eugenio Garza Sada 2501 Sur, Monterrey, NL, Mexico.
Tecnologico de Monterrey, Escuela de Ingeniería y Ciencias, Centro de Biotecnología-FEMSA, Av. Eugenio Garza Sada 2501 Sur, Monterrey, NL, Mexico.
Luminescence. 2023 Mar;38(3):341-349. doi: 10.1002/bio.4460. Epub 2023 Feb 18.
Chemiluminescence (CL) reactions are widely used for the detection and quantification of many types of analytes. Laccase has previously been proposed in CL reactions; however, its light emission behaviour has not been characterized. This study was conducted to characterize the laccase-luminol system, determine its kinetic parameters, and analyze the effects of protein and OH- concentration on the CL signal. Laccase from Coriolopsis gallica was combined with different concentrations of luminol (125 nM to 4 mM), and the enzyme kinetics were evaluated using diverse kinetic models. The laccase-luminol system was able to produce CL without an intermediate molecule, but it exhibited substrate-inhibition behaviour. A two-site random model was used and suggested that when the first luminol molecule was bound to the active site, laccase affinity for the second luminol molecule was increased. This inhibition effect could be avoided using a low luminol concentration. At 5 μM luminol concentration, 1 mg/ml (0.13 U) laccase is needed to achieve nearly 90% of the maximum CL signal, suggesting that the available luminol could not bind to all active sites. Furthermore, the concentration of NaOH negatively affected the CL signal. The laccase-luminol system represents an alternative to existing CL systems, with potential uses in molecular detection and quantification.
化学发光(CL)反应广泛应用于多种分析物的检测和定量。漆酶先前已被提议用于 CL 反应,但它的发光行为尚未得到表征。本研究旨在表征漆酶-鲁米诺系统,确定其动力学参数,并分析蛋白质和 OH-浓度对 CL 信号的影响。从卷边青霉中提取的漆酶与不同浓度的鲁米诺(125 nM 至 4 mM)结合,并使用多种动力学模型评估酶动力学。漆酶-鲁米诺系统能够在没有中间分子的情况下产生 CL,但表现出底物抑制行为。使用双位点随机模型表明,当第一个鲁米诺分子与活性位点结合时,漆酶与第二个鲁米诺分子的亲和力增加。使用低浓度的鲁米诺可以避免这种抑制作用。在 5 μM 鲁米诺浓度下,需要 1 毫克/毫升(0.13 U)的漆酶才能达到近 90%的最大 CL 信号,这表明可用的鲁米诺无法与所有活性位点结合。此外,NaOH 浓度对 CL 信号有负面影响。漆酶-鲁米诺系统是现有 CL 系统的替代方案,具有在分子检测和定量方面的潜在用途。