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Evaluation of Luminogenic Substrates as Probe Substrates for Bacterial Cytochrome P450 Enzymes: Application to Mycobacterium tuberculosis

机译:发光底物作为细菌细胞色素P450酶的探针底物的评估:在结核分枝杆菌中的应用

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摘要

Several cytochrome P450 enzymes (CYPs) encoded in the genome of Mycobacterium tuberculosis (Mtb) are considered potential new drug targets due to the essential roles they play in bacterial viability and in the establishment of chronic intracellular infection. Identification of inhibitors of Mtb CYPs at present is conducted by ultraviolet-visible (UV-vis) optical titration experiments or by metabolism studies using endogenous substrates, such as cholesterol and lanosterol. The first technique requires high enzyme concentrations and volumes, while analysis of steroid hydroxylation is dependent on low-throughput analytical methods. Luciferin-based luminogenic substrates have proven to be very sensitive substrates for the high-throughput profiling of inhibitors of human CYPs. In the present study, 17 pro-luciferins were evaluated as substrates for Mtb CYP121A1, CYP124A1, CYP125A1, CYP130A1, and CYP142A1. Luciferin-BE was identified as an excellent probe substrate for CYP130A1, resulting in a high luminescence yield after addition of luciferase and adenosine triphosphate (ATP). Its applicability for high-throughput screening was supported by a high Z’-factor and high signal-to-background ratio. Using this substrate, the inhibitory properties of a selection of known inhibitors could be characterized using significantly less protein concentration when compared to UV-vis optical titration experiments. Although several luminogenic substrates were also identified for CYP121A1, CYP124A1, CYP125A1, and CYP142A1, their relatively low yield of luminescence and low signal-to-background ratios make them less suitable for high-throughput screening since high enzyme concentrations will be needed. Further structural optimization of luminogenic substrates will be necessary to obtain more sensitive probe substrates for these Mtb CYPs.
机译:结核分枝杆菌(Mtb)基因组中编码的几种细胞色素P450酶(CYP)被认为是潜在的新药靶标,因为它们在细菌生存力和慢性细胞内感染的建立中起着至关重要的作用。目前,Mtb CYPs抑制剂的鉴定是通过紫外线-可见(UV-vis)光学滴定实验或使用内源性底物(例如胆固醇和羊毛甾醇)的代谢研究进行的。第一种技术需要高浓度的酶,而类固醇羟基化的分析则依赖于低通量分析方法。基于荧光素的发光底物已被证明是高通量分析人CYP抑制剂的非常敏感的底物。在本研究中,评估了17种荧光素原作为Mtb CYP121A1,CYP124A1,CYP125A1,CYP130A1和CYP142A1的底物。萤光素-BE被认为是CYP130A1的极佳探针底物,在加入萤光素酶和三磷酸腺苷(ATP)后可产生高发光产量。高Z'因子和高信噪比支持了它在高通量筛选中的适用性。与UV-vis光学滴定实验相比,使用这种底物,可以使用明显更少的蛋白质浓度来表征某些已知抑制剂的抑制特性。尽管还为CYP121A1,CYP124A1,CYP125A1和CYP142A1鉴定了几种发光底物,但由于它们需要较高的酶浓度,因此它们的发光产率相对较低且信噪比较低,因此它们不太适合高通量筛选。为了获得这些Mtb CYP的更敏感的探针底物,将需要进一步优化发光底物的结构。

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