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首页> 外文期刊>Archaea: an international microbiological journal >Characterization of Fatty Acids in Crenarchaeota by GC-MS and NMR
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Characterization of Fatty Acids in Crenarchaeota by GC-MS and NMR

机译:利用GC-MS和NMR表征Crenarchaeota中的脂肪酸

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Lipids composed of condensed isoprenyl units connected to glycerol backbones by ether linkages are a distinguishing feature of Archaea. Data suggesting that fatty acids with linear hydrocarbon chains are present in some Archaea have been available for decades. However, lack of genomic and biochemical evidence for the metabolic machinery required to synthesize and degrade fatty acids has left the field unclear on this potentially significant biochemical aspect. Because lipids are energy currency and cell signaling molecules, their presence in Archaea is significant for understanding archaeal biology. A recent large-scale bioinformatics analysis reignited the debate as to the importance of fatty acids in Archaea by presenting genetic evidence for the presence of enzymes required for anabolic and catabolic fatty acid metabolism across the archaeal domain. Here, we present direct biochemical evidence from gas chromatography-mass spectrometry (GC-MS) and nuclear magnetic resonance (NMR) spectroscopy for the presence of fatty acids in two members of the Crenarchaeota, Sulfolobus solfataricus and Ignicoccus hospitalis. This is the first report providing biochemical data for the existence of fatty acids in these Crenarchaeota, opening new discussions on energy balance and the potential for the discovery of new thermostable enzymes for industry.
机译:由缩合异戊二烯单元组成的脂质通过醚键与甘油主链连接是古细菌的一个显着特征。数据表明在某些古细菌中存在具有直链烃链的脂肪酸已有数十年的历史了。然而,缺乏合成和降解脂肪酸所需的代谢机制的基因组学和生化证据,使得该领域在潜在的重要生化方面尚不清楚。由于脂质是能量流通和细胞信号分子,因此它们在古细菌中的存在对于理解古生物学具有重要意义。最近的大规模生物信息学分析通过提供遗传证据证明整个古细菌域中合成代谢和分解代谢型脂肪酸代谢所需的酶的存在,重新引发了关于脂肪酸在古细菌中重要性的争论。在这里,我们从气相色谱-质谱(GC-MS)和核磁共振(NMR)光谱中提供直接生化证据,证明Crenarchaeota的两个成员Sulfolobus solfataricus和Ignicoccus hospitalis中存在脂肪酸。这是第一份提供有关这些Crenarchaeota中脂肪酸存在的生化数据的报告,开启了有关能量平衡和发现工业上新的热稳定酶潜力的新讨论。

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