Zielinski Thomas, Reichman Melvin, Donover Preston S, Lowery Robert G
1 BellBrook Labs , Madison, Wisconsin.
2 Lankenau Institute for Medical Research , Wynnewood, Pennsylvania.
Assay Drug Dev Technol. 2016 May;14(4):240-51. doi: 10.1089/adt.2016.711. Epub 2016 May 2.
Glycosyltransferase enzymes play diverse metabolic and regulatory roles by catalyzing the transfer of sugar molecules to protein, lipid, and carbohydrate acceptors, and they are increasingly of interest as therapeutic targets in a number of diseases, including metabolic disorders, cancer, and infectious diseases. The glycosyltransferases are a challenging target class from an assay development perspective because of the diversity of both donor and acceptor substrates and the lack of suitable glycan detection methods. However, many glycosyltransferases use uridine 5'-diphosphate (UDP) sugars as donor substrates, and detection of the free UDP reaction product provides a generic approach for measuring the activity of those enzymes. To exploit this approach for a broadly applicable high-throughput screening (HTS) assay for discovery of glycosyltransferase inhibitors, we developed a Transcreener(®) assay for immunodetection of UDP with a time-resolved Förster resonance energy transfer (TR-FRET) signal. We optimized the assay for detection of glycosyltransferase activity with nucleotide diphosphate (NDP) sugars at concentrations from 10 μM to 1 mM, achieving Z' values of 0.6 or higher. The assay was validated by orthogonal pooled screening with 8,000 compounds using polypeptide N-acetylgalactosaminyltransferase T3 as the target, and the hits were confirmed using an orthogonal readout. The reagents and signal were both stable for more than 8 h at room temperature, insuring robust performance in automated HTS environments. The TR-FRET-based UDP detection assay provides a broadly applicable approach for screening glycosyltransferases that use a UDP-sugar donor.
糖基转移酶通过催化糖分子转移至蛋白质、脂质和碳水化合物受体发挥多种代谢和调节作用,并且在包括代谢紊乱、癌症和传染病在内的多种疾病中作为治疗靶点越来越受到关注。从分析方法开发的角度来看,糖基转移酶是一类具有挑战性的靶点,这是因为供体和受体底物的多样性以及缺乏合适的聚糖检测方法。然而,许多糖基转移酶使用尿苷5'-二磷酸(UDP)糖作为供体底物,检测游离的UDP反应产物为测量这些酶的活性提供了一种通用方法。为了利用这种方法开发一种广泛适用的高通量筛选(HTS)分析方法来发现糖基转移酶抑制剂,我们开发了一种用于通过时间分辨荧光共振能量转移(TR-FRET)信号免疫检测UDP的Transcreener(®)分析方法。我们优化了该分析方法,以检测浓度范围为10 μM至1 mM的核苷酸二磷酸(NDP)糖的糖基转移酶活性,实现了Z'值为0.6或更高。该分析方法通过以多肽N-乙酰半乳糖胺基转移酶T3为靶点对8000种化合物进行正交混合筛选进行了验证,并使用正交读数确认了命中结果。试剂和信号在室温下均稳定超过8小时,确保在自动化HTS环境中具有强大的性能。基于TR-FRET的UDP检测分析方法为筛选使用UDP-糖供体的糖基转移酶提供了一种广泛适用的方法。