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Comprehensive Vitamer Profiling of Folate Mono- and Polyglutamates in Baker’s Yeast (Saccharomyces cerevisiae) as a Function of Different Sample Preparation Procedures

机译:面包酵母(Saccharomyces Cerevisiae)中叶酸单酯和聚谷氨酸的综合维生素分析作为不同的样品制备程序的函数

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摘要

Folates are a group of B vitamins playing an important role in many metabolic processes such as methylation reactions, nucleotide synthesis or oxidation and reduction processes. However, humans are not able to synthesize folates de novo and thus rely on external sources thereof. Baker’s yeast ( ) has been shown to produce high amounts of this vitamin but extensive identification of its folate metabolism is still lacking. Therefore, we optimized and compared different sample preparation and purification procedures applying solid phase extraction (SPE). Strong anion exchange (SAX), C18 and hydrophilic–lipophilic-balanced (HLB) materials were tested for their applicability in future metabolomics studies. SAX turned out to be the preferred material for the quantitative purification of folates. Qualification of several folate vitamers was achieved by ultra-high pressure liquid chromatography quadrupole time of flight mass spectrometry (UHPLC-Q-ToF-MS) measurements and quantification was performed by liquid chromatography tandem mass spectrometry (LC-MS/MS) applying stable isotope dilution assays (SIDAs). The oxidation product -pyrazino-triazine (MeFox) was included into the SIDA method for total folate determination and validation. Applying the best protocol (SAX) in regard to folate recovery, we analyzed 32 different vitamers in different polyglutamate states up to nonaglutamates, of which we could further identify 26 vitamers based on tandem-MS (MS ) spectra. Total folate quantification revealed differences in formyl folate contents depending on the cartridge chemistry used for purification. These are supposedly a result of interconversion reactions occurring during sample preparation due to variation in pH adjustments for the different purification protocols. The occurrence of interconversion and oxidation reactions should be taken into consideration in sample preparation procedures for metabolomics analyses with a focus on folates.
机译:叶酸是一组B维生素在许多代谢过程中发挥着重要作用,例如甲基化反应,核苷酸合成或氧化和还原过程。然而,人类无法合成叶片de novo,因此依赖于其外部来源。贝克的酵母()已被证明产生大量的维生素,但仍然缺乏其叶酸新陈代谢的广泛鉴定。因此,我们优化并比较了施用固相萃取(SPE)的不同样品制备和纯化程序。在未来的代谢组研究中测试了强烈的阴离子交换(SAX),C18和亲水性 - 亲脂性 - 平衡(HLB)材料。 SAX原来是定量纯化叶子的优选材料。通过超高压液相色谱法(UHPLC-Q-TOF-MS)测量的超高压液相色谱四(UHPLC-Q-TOF-MS)测量,通过液相色谱串联质谱(LC-MS / MS)进行施用稳定同位素(LC-MS / MS)进行几种叶酸维生素的资格。稀释测定(Sidas)。氧化产物 - 戊酮 - 三嗪(MEFOX)被纳入SIDA方法,用于总叶酸的测定和验证。应用最佳方案(萨克斯)关于叶酸恢复,我们分析了32种不同的聚谷氨酰胺的维生素,其直至非醛酸盐,其中我们可以进一步鉴定基于串联-SMS(MS)光谱的26个维生素。总叶酸总量根据用于纯化的盒化学揭示甲酰基叶酸含量的差异。这些是由于不同纯化方案的pH调节的变化导致在样品制备期间发生的相互转化反应的结果。应考虑到相互转化和氧化反应的发生,以焦点叶肉分析代谢组科的样品制备程序。

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