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Proteome Analyses of Hydrogen-producing Hyperthermophilic Archaeon Thermococcus onnurineus NA1 in Different One-carbon Substrate Culture Conditions

机译:在不同的一碳底物培养条件下产氢的超嗜热古生热球菌NA1的蛋白质组学分析

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摘要

Thermococcus onnurineus NA1, a sulfur-reducing hyperthermophilic archaeon, is capable of H2-producing growth, considered to be hydrogenogenic carboxydotrophy. Utilization of formate as a sole energy source has been well studied in T. onnurineus NA1. However, whether formate can be used as its carbon source remains unknown. To obtain a global view of the metabolic characteristics of H2-producing growth, a quantitative proteome analysis of T. onnurineus NA1 grown on formate, CO, and starch was performed by combining one-dimensional SDS-PAGE with nano UPLC-MSE. A total of 587 proteins corresponding to 29.7% of the encoding genes were identified, and the major metabolic pathways (especially energy metabolism) were characterized at the protein level. Expression of glycolytic enzymes was common but more highly induced in starch-grown cells. In contrast, enzymes involved in key steps of the gluconeogenesis and pentose phosphate pathways were strongly up-regulated in formate-grown cells, suggesting that formate could be utilized as a carbon source by T. onnurineus NA1. In accordance with the genomic analysis, comprehensive proteomic analysis also revealed a number of hydrogenase clusters apparently associated with formate metabolism. On the other hand, CODH and CO-induced hydrogenases belonging to the Hyg4-II cluster, as well as sulfhydrogenase-I and Mbx, were prominently expressed during CO culture. Our data suggest that CO can be utilized as a sole energy source for H2 production via an electron transport mechanism and that CO2 produced from catabolism or CO oxidation by CODH and CO-induced hydrogenases may subsequently be assimilated into the organic carbon. Overall, proteomic comparison of formate- and CO-grown cells with starch-grown cells revealed that a single carbon compound, such as formate and CO, can be utilized as an efficient substrate to provide cellular carbon and/or energy by T. onnurineus NA1.
机译:嗜热球菌NA1,一种还原硫的超嗜热古细菌,能够产生H 2的生长,被认为是产氢的羧基营养障碍。在甲虫(T. onnurineus)NA1中已充分研究了将甲酸用作唯一能源。但是,甲酸是否可以用作其碳源仍然未知。为了全面了解产氢的代谢特征,通过将一维SDS-PAGE与纳米UPLC-MS相结合,对在甲酸盐,一氧化碳和淀粉上生长的环纹螺NA1进行了蛋白质组学定量分析。 E 。总共鉴定出587种蛋白质,占编码基因的29.7%,并且在蛋白质水平上表征了主要的代谢途径(尤其是能量代谢)。糖酵解酶的表达很普遍,但在淀粉生长的细胞中被高度诱导。相反,参与糖原异生和戊糖磷酸途径关键步骤的酶在甲酸盐生长的细胞中强烈上调,这表明甲酸盐可以被T. onnurineus NA1用作碳源。根据基因组分析,综合蛋白质组学分析还发现了许多明显与甲酸代谢相关的氢化酶簇。另一方面,在CO培养期间,显着表达了属于Hyg4-II簇的CODH和CO诱导的氢化酶,以及硫氢酶-I和Mbx。我们的数据表明,CO可以通过电子传输机制用作生产H2的唯一能源,并且分解代谢或CODH和CO诱导的加氢酶分解代谢产生的CO2随后可被同化为有机碳。总的来说,甲酸和CO生长的细胞与淀粉生长的细胞的蛋白质组学比较表明,单个碳化合物(例如甲酸和CO)可以用作有效的底物,从而通过T. onnurineus NA1提供细胞碳和/或能量。 。

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