Maciel Larissa G, Dos Anjos Janaína V, Soares Thereza A
Department of Fundamental Chemistry, Federal University of Pernambuco (UFPE), Brazil.
MethodsX. 2020 Jul 2;7:100982. doi: 10.1016/j.mex.2020.100982. eCollection 2020.
The enzyme 3-hydroxykynurenine transaminase (HKT) acts as an important enzyme in tryptophan catabolism of disease-carrier insects, e.g. and . HKT is a detoxification enzyme that converts 3-hydroxykynurenine (a precursor for reactive nitrogen and oxygen species) into xanthurenic acid (stable and nontoxic compound). We have previously synthesized eleven new oxadiazole derivatives and demonstrated their noncompetitive inhibitory activity towards HKT from (https://doi.org/10.1016/j.bmc.2019.115252). These findings are presented in a research paper accompanying the present technical report on a new assay to overcome the fact that the substrate and product of the HKT-catalyzed reaction exhibit maximum absorption at very near wavelength (370 and 369 nm, respectively). The methods previously described in the literature rely on chromatographic separation prior to absorbance quantification, which limits their use for inhibitor screening. Due to HKT attractive features as a molecular target for larvicidal compounds, we report herein a new, faster and affordable methodology to evaluate the enzymatic activity of recombinant HKT, and therefore allow for the fast screening of potential HKT inhibitors via absorbance spectrophotometer. The advantages of the proposed methodology to previously described ones are:•It is faster and cheaper than HPLC-based assays because it does not require the use of chromatography columns and solvents to separate reaction components;•It uses of 96-well plates, enabling the simultaneous quantification of samples;•It can be applied to all transaminases that have xanthurenic acid as a product.
3-羟基犬尿氨酸转氨酶(HKT)是致病昆虫色氨酸分解代谢中的一种重要酶,例如[具体昆虫1]和[具体昆虫2]。HKT是一种解毒酶,可将3-羟基犬尿氨酸(活性氮和氧物种的前体)转化为黄尿酸(稳定且无毒的化合物)。我们之前合成了11种新的恶二唑衍生物,并证明了它们对来自[具体来源]的HKT具有非竞争性抑制活性(https://doi.org/10.1016/j.bmc.2019.115252)。这些发现发表在一篇研究论文中,该论文伴随本技术报告,介绍了一种新的检测方法,以克服HKT催化反应的底物和产物在非常接近的波长(分别为370和369 nm)处呈现最大吸收这一问题。文献中先前描述的方法在吸光度定量之前依赖色谱分离,这限制了它们在抑制剂筛选中的应用。由于HKT作为杀幼虫化合物的分子靶点具有吸引人的特性,我们在此报告一种新的、更快且经济实惠的方法来评估重组HKT的酶活性,从而能够通过吸光分光光度计快速筛选潜在的HKT抑制剂。所提出的方法相对于先前描述的方法的优点如下:
• 它比基于高效液相色谱的检测方法更快、更便宜,因为它不需要使用色谱柱和溶剂来分离反应成分;
• 它使用96孔板,能够同时对样品进行定量;
• 它可应用于所有以黄尿酸为产物的转氨酶。