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体外和体内单酰甘油酰基转移酶-2活性的代谢追踪

Metabolic tracing of monoacylglycerol acyltransferase-2 activity in vitro and in vivo.

作者信息

Qi Jenson, Lang Wensheng, Connelly Margery A, Du Fuyong, Liang Yin, Caldwell Gary W, Martin Tonya, Hansen Michael K, Kuo Gee-Hong, Gaul Michael D, Pocai Alessandro, Lee Seunghun

机构信息

Cardiovascular and Metabolic Disease Research, Janssen Research & Development, LLC, 1400 McKean Road, Spring House, PA 19477-0776, USA.

Discovery Sciences, Janssen Research & Development, LLC, 1400 McKean Road, Spring House, PA 19477-0776, USA.

出版信息

Anal Biochem. 2017 May 1;524:68-75. doi: 10.1016/j.ab.2016.09.017. Epub 2016 Sep 22.

Abstract

Monoacylglycerol acyltransferase 2 (MGAT2) catalyzes the synthesis of diacylglycerol (DAG) from free fatty acids (FFA) and sn-monoacylglycerol (MG), the two major hydrolysis products of dietary fat. To demonstrate MGAT2-mediated cellular activity of triglyceride (TG) synthesis, we utilized 1-oleoyl-glycerol-d5 as a substrate to trace MGAT2-driven 1-oleoyl-glycerol-d5 incorporation into TG in HEK293 cells stably expressing human MGAT2. The oleoyl-glycerol-d5 incorporated major TG species were then quantified by liquid chromatography electrospray ionization tandem mass spectrometry (LC/ESI/MS/MS) in a 96-well format. Conventional MGAT2 target-engagement in vivo assays measure the elevation of total plasma TG by orally dosing a bolus of TG oil. We developed a novel LC/ESI/MS/MS-based fat absorption assay to assess the ability of MGAT2 inhibitors to inhibit fat absorption in CD1 mice by a meal tolerance test consisting of a mixture of liquid Boost plus and 0.59 g/kg C-TG oil. The newly resynthesized plasma heavy TGs containing three C in the glycerol backbone and two C-acyl-chains, which represented the digested, absorbed and resynthesized TGs, were then quantitated by LC/ESI/MS/MS. With this assay, we identified a potent MGAT2 inhibitor that blocked MGAT2-mediated activity in vitro and in vivo. The use of 1-oleoyl-glycerol-d5 and C-TG oil followed by LC/ESI/MS/MS detection of stable-isotopic labeled DAG, TG, or glycerol provides a wide range of applications to study pathophysiological regulation of the monoacylglycerol pathway and MGAT2 activity.

摘要

单酰甘油酰基转移酶2(MGAT2)催化由游离脂肪酸(FFA)和sn - 单酰甘油(MG)合成二酰甘油(DAG),这两者是膳食脂肪的两种主要水解产物。为了证明MGAT2介导的甘油三酯(TG)合成的细胞活性,我们利用1 - 油酰基 - 甘油 - d5作为底物,追踪MGAT2驱动的1 - 油酰基 - 甘油 - d5掺入稳定表达人MGAT2的HEK293细胞中的TG。然后通过液相色谱电喷雾电离串联质谱法(LC/ESI/MS/MS)以96孔板形式对掺入主要TG种类的油酰基 - 甘油 - d5进行定量。传统的MGAT2体内靶点结合测定通过口服一剂TG油来测量血浆总TG的升高。我们开发了一种基于LC/ESI/MS/MS的新型脂肪吸收测定法,通过由液体Boost plus和0.59 g/kg C - TG油的混合物组成的餐耐量试验来评估MGAT2抑制剂抑制CD1小鼠脂肪吸收的能力。然后通过LC/ESI/MS/MS对新重新合成的在甘油主链中含有三个C以及两个C - 酰基链的血浆重TG进行定量,这些重TG代表了消化、吸收和重新合成的TG。通过该测定法,我们鉴定出一种有效的MGAT2抑制剂,其在体外和体内均能阻断MGAT2介导的活性。使用1 - 油酰基 - 甘油 - d5和C - TG油,随后通过LC/ESI/MS/MS检测稳定同位素标记的DAG、TG或甘油,为研究单酰甘油途径的病理生理调节和MGAT2活性提供了广泛的应用。

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