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一种用于原核和真核微生物中短链 CoA 硫酯绝对定量的常用方法。

A common approach for absolute quantification of short chain CoA thioesters in prokaryotic and eukaryotic microbes.

机构信息

Institute of Systems Biotechnology, Saarland University, Saarbrücken, Germany.

Max Planck Institute for Terrestrial Microbiology, Marburg, Germany.

出版信息

Microb Cell Fact. 2020 Aug 10;19(1):160. doi: 10.1186/s12934-020-01413-1.

Abstract

BACKGROUND

Thioesters of coenzyme A participate in 5% of all enzymatic reactions. In microbial cell factories, they function as building blocks for products of recognized commercial value, including natural products such as polyketides, polyunsaturated fatty acids, biofuels, and biopolymers. A core spectrum of approximately 5-10 short chain thioesters is present in many microbes, as inferred from their genomic repertoire. The relevance of these metabolites explains the high interest to trace and quantify them in microbial cells.

RESULTS

Here, we describe a common workflow for extraction and absolute quantification of short chain CoA thioesters in different gram-positive and gram-negative bacteria and eukaryotic yeast, i.e. Corynebacterium glutamicum, Streptomyces albus, Pseudomonas putida, and Yarrowia lipolytica. The approach assessed intracellular CoA thioesters down to the picomolar level and exhibited high precision and reproducibility for all microbes, as shown by principal component analysis. Furthermore, it provided interesting insights into microbial CoA metabolism. A succinyl-CoA synthase defective mutant of C. glutamicum exhibited an unaffected level of succinyl-CoA that indicated a complete compensation by the L-lysine pathway to bypass the disrupted TCA cycle. Methylmalonyl-CoA, an important building block of high-value polyketides, was identified as dominant CoA thioester in the actinomycete S. albus. The microbe revealed a more than 10,000-fold difference in the abundance of intracellular CoA thioesters. A recombinant strain of S. albus, which produced different derivatives of the antituberculosis polyketide pamamycin, revealed a significant depletion of CoA thioesters of the ethylmalonyl CoA pathway, influencing product level and spectrum.

CONCLUSIONS

The high relevance of short chain CoA thioesters to synthetize industrial products and the interesting insights gained from the examples shown in this work, suggest analyzing these metabolites in microbial cell factories more routinely than done so far. Due to its broad application range, the developed approach appears useful to be applied this purpose. Hereby, the possibility to use one single protocol promises to facilitate automatized efforts, which rely on standardized workflows.

摘要

背景

辅酶 A 的硫酯参与了所有酶反应的 5%。在微生物细胞工厂中,它们作为具有公认商业价值的产品的构建块,包括天然产物如聚酮、多不饱和脂肪酸、生物燃料和生物聚合物。从它们的基因组组成推断,许多微生物中都存在大约 5-10 种短链硫酯的核心谱。这些代谢物的相关性解释了在微生物细胞中追踪和定量它们的高度兴趣。

结果

在这里,我们描述了一种在不同革兰氏阳性和革兰氏阴性细菌和真核酵母(即谷氨酸棒杆菌、白色链霉菌、恶臭假单胞菌和脂肪酵母)中提取和绝对定量短链 CoA 硫酯的通用工作流程。该方法评估了细胞内 CoA 硫酯的皮摩尔水平,并且通过主成分分析显示了所有微生物的高精度和重现性。此外,它为微生物 CoA 代谢提供了有趣的见解。谷氨酸棒杆菌的琥珀酰 CoA 合酶缺陷突变体表现出琥珀酰 CoA的未受影响水平,这表明通过 L-赖氨酸途径完全补偿了破坏的 TCA 循环。甲基丙二酰 CoA,一种高价值聚酮的重要构建块,被鉴定为放线菌白色链霉菌的主要 CoA 硫酯。该微生物显示出细胞内 CoA 硫酯的丰度差异超过 10000 倍。白色链霉菌的重组菌株产生了不同的抗结核多酮 pamamycin 衍生物,显示出乙基丙二酰 CoA 途径的 CoA 硫酯明显耗竭,影响了产物水平和谱。

结论

短链 CoA 硫酯对于合成工业产品的高度相关性以及从这项工作中展示的例子中获得的有趣见解,表明有必要比以往更常规地分析微生物细胞工厂中的这些代谢物。由于其广泛的应用范围,所开发的方法似乎适用于此目的。因此,使用单个协议的可能性有望促进基于标准化工作流程的自动化工作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a63c/7418318/376093c43f41/12934_2020_1413_Fig1_HTML.jpg

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