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Cell-based assay of MGAT2-driven diacylglycerol synthesis for profiling inhibitors: use of a stable isotope-labeled substrate and high-resolution LC/MS

机译:MGAT2驱动的二酰基甘油合成用于谱抑制剂的基于细胞的测定:使用稳定的同位素标记的底物和高分辨率LC / MS

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摘要

To demonstrate monoacylglycerol acyltransferase 2 (MGAT2)-mediated enzyme activity in a cellular context, cells of the murine secretin tumor cell-1 line of enteroendocrine origin were used to construct human MGAT2-expressing recombinant cell lines. Low throughput and utilization of radiolabeled substrate in a traditional TLC technique were circumvented by development of a high-resolution LC/MS platform. Monitoring incorporation of stable isotope-labeled D31-palmitate into diacylglycerol (DAG) allowed selective tracing of the cellular DAG synthesis activity. This assay format dramatically reduced background interference and increased the sensitivity and the signal window compared with the TLC method. Using this assay, several MGAT2 inhibitors from different chemotypes were characterized. The described cell-based assay adds a new methodology for the development and evaluation of MGAT2 inhibitors for the treatment of obesity and type 2 diabetes.
机译:为了证明单酰基甘油酰基转移酶2(MGAT2)介导的酶活性在细胞中的背景,肠内分泌来源的鼠分泌素肿瘤细胞-1系的细胞被用于构建表达人MGAT2的重组细胞系。开发高分辨率LC / MS平台可避免传统TLC技术中低通量和放射性标记底物的利用。监测稳定同位素标记的D31-棕榈酸酯掺入二酰基甘油(DAG)中可以选择性追踪细胞DAG合成活性。与TLC方法相比,这种测定形式大大降低了背景干扰,并提高了灵敏度和信号窗口。使用该测定法,鉴定了来自不同化学型的几种MGAT2抑制剂。所述基于细胞的测定法增加了用于开发和评估用于肥胖和2型糖尿病的MGAT2抑制剂的新方法。

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