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Dansylation Metabolite Assay: A Simple and Rapid Method for Sample Amount Normalization in Metabolomics

机译:Dansylation代谢物测定:代谢组学中样品量归一化的简单快速方法

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Metabolomics involves the comparison of the metabolomes of individual samples from two or more groups to reveal the metabolic differences. In order to measure the metabolite concentration differences accurately, using the same amount of starting materials is essential. In this work, we describe a simple and rapid method for sample amount normalization. It is based on dansylation labeling of the amine and phenol submetabolome of an individual sample, followed by solvent extraction of the labeled metabolites and ultraviolet (UV) absorbance measurement using a microplate reader. A calibration curve of a mixture of 17 dansyl-labeled amino acid standards is used to determine the total concentration of the labeled metabolites in a sample. According to the measured concentrations of individual samples, the volume of an aliquot taken from each sample is adjusted so that the same sample amount is taken for subsequent metabolome comparison. As an example of applications, this dansylation metabolite assay method is shown to be useful in comparative metabolome analysis of two different E. coli strains using a differential chemical isotope labeling LC-MS platform. Because of the low cost of equipment and reagents and the simple procedure used in the assay, this method can be readily implemented. We envisage that, this assay, which is analogous to the bicinchoninic acid (BCA) protein assay widely used in proteomics, will be applicable to many types of samples for quantitative metabolomics.
机译:代谢组学涉及对来自两个或多个组的单个样品的代谢组进行比较,以揭示代谢差异。为了准确测量代谢物的浓度差异,必须使用相同量的原料。在这项工作中,我们描述了一种简单而快速的样本量归一化方法。它基于单个样品的胺和苯酚亚代谢组的丹磺酰化标记,然后溶剂萃取标记的代谢物,并使用酶标仪测量紫外线(UV)的吸光度。 17种丹磺酰基标记的氨基酸标准品混合物的校准曲线用于确定样品中标记的代谢物的总浓度。根据测得的各个样品的浓度,调整从每个样品中提取的等分试样的体积,以便获取相同的样品量以进行后续的代谢组比较。作为应用示例,该丹磺酰代谢产物测定方法显示出可用于使用差分化学同位素标记LC-MS平台对两种不同大肠杆菌菌株进行比较代谢组分析。由于设备和试剂的低成本以及测定中使用的简单程序,因此可以轻松实施此方法。我们设想,该检测方法类似于蛋白质组学中广泛使用的双辛可宁酸(BCA)蛋白检测方法,将适用于许多类型的定量代谢组学样品。

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