Department of Microbiology, Universität Innsbruck;
Department of Microbiology, Universität Innsbruck.
J Vis Exp. 2021 Oct 14(176). doi: 10.3791/62737.
The cofactor F420 plays a central role as a hydride carrier in the primary and secondary metabolism of many bacterial and archaeal taxa. The cofactor is best known for its role in methanogenesis, where it facilitates thermodynamically difficult reactions. As the polyglutamate tail varies in length between different organisms, length profile analyses might be a powerful tool for distinguishing and characterizing different groups and pathways in various habitats. Here, the protocol describes the extraction and optimization of cofactor F420 detection by applying solid-phase extraction combined with high-performance liquid chromatography analysis independent of cultural or molecular biological approaches. The method was applied to gain additional information on the expression of cofactor F420 from microbial communities in soils, anaerobic sludge, and pure cultures and was evaluated by spiking experiments. Thereby, the study succeeded in generating different F420 tail-length profiles for hydrogenotrophic and acetoclastic methanogens in controlled methanogenic pure cultures as well as from environmental samples such as anaerobic digester sludge and soils.
辅因子 F420 在许多细菌和古菌的初级和次级代谢中作为氢化物载体发挥着核心作用。该辅因子最为人所知的是其在产甲烷作用中的作用,它促进了热力学困难的反应。由于不同生物体之间的多谷氨酸尾巴长度不同,长度分布分析可能是区分和表征不同生境中不同群体和途径的有力工具。在这里,该方案描述了通过应用固相萃取与高效液相色谱分析相结合的方法来提取和优化辅因子 F420 的检测,该方法独立于文化或分子生物学方法。该方法被应用于从土壤、厌氧污泥和纯培养物中的微生物群落中获得关于辅因子 F420 表达的额外信息,并通过加标实验进行了评估。由此,该研究成功地为受控产甲烷纯培养物中的氢营养型和乙酸营养型产甲烷菌以及来自厌氧消化污泥和土壤等环境样本生成了不同的 F420 尾长分布。