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利用底物竞争法测定溶血磷脂酰转移酶活性

Measurement of lysophospholipid acyltransferase activities using substrate competition.

作者信息

Martin Sarah A, Gijón Miguel A, Voelker Dennis R, Murphy Robert C

机构信息

Department of Pharmacology, University of Colorado Denver, Aurora, CO 80045.

出版信息

J Lipid Res. 2014 Apr;55(4):782-91. doi: 10.1194/jlr.D044636. Epub 2014 Feb 21.

Abstract

Lysophospholipid acyltransferases (LPATs) incorporate fatty acyl chains into phospholipids via a CoA-dependent mechanism and are important in remodeling phospholipids to generate the molecular species of phospholipids found in cells. These enzymes use one lysophospholipid and one acyl-CoA ester as substrates. Traditional enzyme activity assays engage a single substrate pair, whereas in vivo multiple molecular species exist. We describe here an alternative biochemical assay that provides a mixture of substrates presented to the microsomal extracts. Microsomal preparations from RAW 264.7 cells were used to compare traditional LPAT assays with data obtained using a dual substrate choice assay using six different lysophospholipids and eight different acyl-CoA esters. The complex mixture of newly synthesized phospholipid products was analyzed using LC-MS/MS. Both types of assays provided similar results, but the dual choice assay provided information about multiple fatty acyl chain incorporation into various phospholipid classes in a single reaction. Engineered suppression of LPCAT3 activity in RAW 264.7 cells was easily detected by the dual choice method. These findings demonstrate that this assay is both specific and sensitive and that it provides much richer biochemical detail than traditional assays.

摘要

溶血磷脂酰转移酶(LPATs)通过依赖辅酶A的机制将脂肪酰链掺入磷脂中,在重塑磷脂以生成细胞中发现的磷脂分子种类方面发挥重要作用。这些酶以一种溶血磷脂和一种酰基辅酶A酯作为底物。传统的酶活性测定使用单一底物对,而在体内存在多种分子种类。我们在此描述一种替代生化测定方法,该方法提供呈现给微粒体提取物的底物混合物。使用来自RAW 264.7细胞的微粒体制剂,将传统的LPAT测定与使用六种不同溶血磷脂和八种不同酰基辅酶A酯的双底物选择测定获得的数据进行比较。使用LC-MS/MS分析新合成的磷脂产物的复杂混合物。两种类型的测定都提供了相似的结果,但双选择测定在单一反应中提供了关于多种脂肪酰链掺入各种磷脂类别的信息。通过双选择方法很容易检测到RAW 264.7细胞中LPCAT3活性的工程化抑制。这些发现表明该测定既特异又灵敏,并且比传统测定提供了更丰富的生化细节。

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