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Development of high-throughput quantitative analytical method for l-cysteine-containing dipeptides by LC–MS/MS toward its fermentative production

机译:通过LC-MS / MS建立高通量定量分析含L-半胱氨酸的二肽的方法以用于发酵生产

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摘要

l-Cysteine (Cys) is metabolically fundamental sulfur compound and important components in various cellular factors. Interestingly, free-form Cys itself as a simple monomeric amino acid was recently shown to function in a novel antioxidative system (cysteine/cystine shuttle system) in Escherichia coli. However, as for Cys-containing dipeptides, the biological functions, effects, and even contents have still remained largely elusive. The potential functions should be a part of cellular redox system and important in basic and applied biology. For its progress, establishment of reliable quantitation method is the first. However, such accurate analysis is unexpectedly difficult even in Cys, because thiol compounds convert through disulfide-exchange and air oxidation during sample preparation. Addressing this problem, in this study, thiol molecules like Cys-containing dipeptides were derivatized by using monobromobimane (thiol-specific alkylating reagent) and detected as S-bimanyl derivatives by liquid chromatography coupled to tandem mass spectrometry (LC–MS/MS). Sample separation was processed with a C18 column (2.1 mm × 150 mm, 1.7 μm) and with water-acetonitrile gradient mobile phase containing 0.1% (v/v) formic acid at flow rate of 0.25 ml/min. The mass spectrometer was operated in the multiple reaction monitoring in positiveegative mode with electrospray ionization. The derivatization could indeed avoid the unfavorable reactions, namely, developed the method reflecting their correct contents on sampling. Furthermore, the method was successfully applied to monitoring Cys-containing dipeptides in E. coli Cys producer overexpressing bacD gene. This is the first report of the quantitative analysis of Cys-containing dipeptides, which should be useful for further study of fermentative production of Cys-containing dipeptides.
机译:半胱氨酸(Cys)是新陈代谢的基本硫化合物,是各种细胞因子中的重要成分。有趣的是,自由形式的Cys本身作为一种简单的单体氨基酸,最近在大肠杆菌中可在新型抗氧化系统(半胱氨酸/胱氨酸穿梭系统)中发挥作用。但是,对于含Cys的二肽,其生物学功能,作用,甚至含量仍然很大。潜在功能应该是细胞氧化还原系统的一部分,并且在基础和应用生物学中很重要。对于其进展,建立可靠的定量方法是第一个。但是,即使在Cys中,这种精确的分析也出乎意料地困难,因为硫醇化合物在样品制备过程中会通过二硫键交换和空气氧化而转化。为了解决这个问题,在这项研究中,通过使用单溴二苯胺(硫醇特异性烷基化试剂)将巯基分子(如含Cys的二肽)衍生化,并通过液相色谱-串联质谱(LC-MS / MS)将其检测为S-二烷基衍生物。样品分离用C18柱(2.1×mm××150μmm,1.7μm)和含有0.1%(v / v)甲酸的水-乙腈梯度流动相进行处理,流速为0.25μml/ min。质谱仪通过电喷雾电离以正/负模式在多反应监测中运行。衍生化的确可以避免不利的反应,即开发了一种在采样时反映其正确含量的方法。此外,该方法已成功应用于监测大肠杆菌Cys生产者过表达bacD基因的含Cys的二肽。这是对含Cys的二肽进行定量分析的第一份报告,这对进一步研究含Cys的二肽的发酵生产应该是有用的。

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