Biotechnology Research Center and Department of Biotechnology, Toyama Prefectural University, 5180 Kurokawa, Imizu, Toyama 939-0398, Japan; Asano Active Enzyme Molecule Project, ERATO, JST, 5180 Kurokawa, Imizu, Toyama 939-0398, Japan.
Biotechnology Research Center and Department of Biotechnology, Toyama Prefectural University, 5180 Kurokawa, Imizu, Toyama 939-0398, Japan.
Anal Biochem. 2014 Feb 15;447:33-8. doi: 10.1016/j.ab.2013.11.002. Epub 2013 Nov 14.
An enzymatic assay for L-methionine was developed by coupling adenosylmethionine synthetase (AdoMetS) to a pyrophosphate (PP(i)) detection system, which was constructed using pyruvate, phosphate dikinase. To expand the use of this assay, the PP(i) detection system was embodied as three different forms, which allowed PP(i) to be measured by UV, visible, and fluorescent light detectors. The assay system was robust and could tolerate the addition of inorganic phosphate and ATP to the assay mixtures. L-Methionine could be accurately determined by coupling the PP(i) detection system and AdoMetS. This AdoMetS coupling assay was highly selective to L-methionine and exhibited no significant activity to other proteinaceous amino acids, ammonia, or urea, unlike conventional enzymatic assays for L-methionine. Spike and recovery tests showed that the AdoMetS assay could accurately and reproducibly determine increases in L-methionine in human plasma samples without any pretreatment to remove proteins and potentially interfering low-molecular-weight molecules. The high selectivity and robustness of the AdoMetS assay provide rapid and high-throughput analysis of L-methionine in various kinds of analytes.
开发了一种用于 L-蛋氨酸的酶促测定法,方法是将腺苷甲硫氨酸合成酶 (AdoMetS) 与焦磷酸 (PP(i)) 检测系统偶联,该系统使用丙酮酸、磷酸二激酶构建。为了扩大该测定法的用途,将 PP(i) 检测系统设计为三种不同的形式,这使得可以通过紫外光、可见光和荧光光检测器测量 PP(i)。该测定系统稳健,可耐受向测定混合物中添加无机磷酸盐和 ATP。通过将 PP(i) 检测系统和 AdoMetS 偶联,可以准确地测定 L-蛋氨酸。与传统的 L-蛋氨酸酶促测定法不同,该 AdoMetS 偶联测定法对 L-蛋氨酸具有高度选择性,对其他蛋白质氨基酸、氨或尿素没有明显活性。加标和回收测试表明,AdoMetS 测定法可在无需任何预处理以去除蛋白质和潜在干扰的低分子量分子的情况下,准确且可重复地测定人血浆样品中 L-蛋氨酸的增加量。AdoMetS 测定法的高选择性和稳健性为各种分析物中 L-蛋氨酸的快速高通量分析提供了可能。