Centre for Analytical Bioscience, School of Pharmacy , University of Nottingham , Nottingham NG7 2RD , U.K.
Clostridia Research Group, SBRC-Nottingham, a BBSRC/EPSRC Synthetic Biology Research Centre, School of Life Sciences , University of Nottingham , Nottingham NG7 2RD , U.K.
Anal Chem. 2018 Apr 3;90(7):4470-4477. doi: 10.1021/acs.analchem.7b04758. Epub 2018 Mar 21.
We have investigated the applicability of commercially available lyophilized spirulina ( Arthrospira platensis), a microorganism uniformly labeled with C, as a readily accessible source of multiple C-labeled metabolites suitable as internal standards for the quantitative determination of intracellular bacterial metabolites. Metabolites of interest were analyzed by hydrophilic-interaction liquid chromatography coupled with high-resolution mass spectrometry. Multiple internal standards obtained from uniformly (U)-C-labeled extracts from spirulina were used to enable isotope-dilution mass spectrometry (IDMS) in the identification and quantification of intracellular metabolites. Extraction of the intracellular metabolites of Clostridium autoethanogenum using 2:1:1 chloroform/methanol/water was found to be the optimal method in comparison with freeze-thaw, homogenization, and sonication methods. The limits of quantification were ≤1 μM with excellent linearity for all of the calibration curves ( R ≥ 0.99) for 74 metabolites. The precision and accuracy were found to be within relative standard deviations (RSDs) of 15% for 49 of the metabolites and within RSDs of 20% for all of the metabolites. The method was applied to study the effects of feeding different levels of carbon monoxide (as a carbon source) on the central metabolism and Wood-Ljungdahl pathway of C. autoethanogenum grown in continuous culture over 35 days. Using LC-IDMS with U-C spirulina allowed the successful quantification of 52 metabolites in the samples, including amino acids, carboxylic acids, sugar phosphates, purines, and pyrimidines. The method provided absolute quantitative data on intracellular metabolites that was suitable for computational modeling to understand and optimize the C. autoethanogenum metabolic pathways active in gas fermentation.
我们研究了市售冻干螺旋藻( Arthrospira platensis)的适用性,该微生物均匀标记有 C,可以作为多种 C 标记代谢物的易得来源,适合用作定量测定细胞内细菌代谢物的内标。通过亲水相互作用液相色谱与高分辨率质谱联用分析感兴趣的代谢物。从螺旋藻的均匀(U)-C 标记提取物中获得的多种内标用于对细胞内代谢物进行同位素稀释质谱(IDMS)鉴定和定量。与冻融、匀浆和超声处理方法相比,使用 2:1:1 三氯甲烷/甲醇/水提取梭菌自养菌的细胞内代谢物是最佳方法。对于 74 种代谢物,所有校准曲线的定量限均≤1 μM,且具有极好的线性(R≥0.99)。对于 49 种代谢物,发现精密度和准确度在相对标准偏差(RSD)为 15%以内,对于所有代谢物,RSD 在 20%以内。该方法用于研究以不同水平的一氧化碳(作为碳源)喂养对连续培养 35 天的自养梭菌的中心代谢和 Wood-Ljungdahl 途径的影响。使用 LC-IDMS 与 U-C 螺旋藻,可成功定量 52 种代谢物,包括氨基酸、羧酸、糖磷酸、嘌呤和嘧啶。该方法提供了细胞内代谢物的绝对定量数据,适合于计算建模以理解和优化在气体发酵中活跃的自养梭菌代谢途径。