Department of Chemistry, University of Crete, Voutes Campus, Heraklion, Greece.
Proteomics, Max Planck Institute of Biophysics, Frankfurt am Main, Germany.
Proteomics. 2023 May;23(10):e2200138. doi: 10.1002/pmic.202200138. Epub 2023 Mar 10.
Chlorobaculum tepidum is an anaerobic green sulfur bacterium which oxidizes sulfide, elemental sulfur, and thiosulfate for photosynthetic growth. It can also oxidize sulfide to produce extracellular S globules, which can be further oxidized to sulfate and used as an electron donor. Here, we performed label-free quantitative proteomics on total cell lysates prepared from different metabolic states, including a sulfur production state (10 h post-incubation [PI]), the beginning of sulfur consumption (20 h PI), and the end of sulfur consumption (40 h PI), respectively. We observed an increased abundance of the sulfide:quinone oxidoreductase (Sqr) proteins in 10 h PI indicating a sulfur production state. The periplasmic thiosulfate-oxidizing Sox enzymes and the dissimilatory sulfite reductase (Dsr) subunits showed an increased abundance in 20 h PI, corresponding to the sulfur-consuming state. In addition, we found that the abundance of the heterodisulfide-reductase and the sulfhydrogenase operons was influenced by electron donor availability and may be associated with sulfur metabolism. Further, we isolated and analyzed the extracellular sulfur globules in the different metabolic states to study their morphology and the sulfur cluster composition, yielding 58 previously uncharacterized proteins in purified globules. Our results show that C. tepidum regulates the cellular levels of enzymes involved in sulfur metabolism in response to the availability of reduced sulfur compounds.
中温绿硫菌是一种厌氧的绿色硫细菌,可氧化硫化物、单质硫和硫代硫酸盐进行光合作用。它还可以氧化硫化物产生细胞外 S 球,进一步氧化为硫酸盐,并用作电子供体。在这里,我们对来自不同代谢状态的总细胞裂解物进行了无标记定量蛋白质组学分析,包括硫生产状态(孵育后 10 小时[PI])、硫消耗开始(20 PI)和硫消耗结束(40 PI)。我们观察到,在 10 h PI 时,硫化物:醌氧化还原酶(Sqr)蛋白的丰度增加,表明处于硫生产状态。在 20 h PI 时,周质硫代硫酸盐氧化 Sox 酶和异化亚硫酸盐还原酶(Dsr)亚基的丰度增加,对应于硫消耗状态。此外,我们发现异二硫化物还原酶和硫氢化酶操纵子的丰度受电子供体可用性的影响,可能与硫代谢有关。此外,我们还分离和分析了不同代谢状态下的细胞外硫球,以研究其形态和硫簇组成,在纯化的硫球中发现了 58 种以前未表征的蛋白质。我们的研究结果表明,中温绿硫菌根据还原态硫化合物的可用性调节参与硫代谢的细胞内酶的水平。