Knüppel Robert, Kuttenberger Corinna, Ferreira-Cerca Sébastien
Biochemistry III, Institute for Biochemistry, Genetics and Microbiology, University of Regensburg Regensburg, Germany.
Front Microbiol. 2017 Feb 24;8:286. doi: 10.3389/fmicb.2017.00286. eCollection 2017.
Archaea are widespread organisms colonizing almost every habitat on Earth. However, the molecular biology of archaea still remains relatively uncharacterized. RNA metabolism is a central cellular process, which has been extensively analyzed in both bacteria and eukarya. In contrast, analysis of RNA metabolism dynamic in archaea has been limited to date. To facilitate analysis of the RNA metabolism dynamic at a system-wide scale in archaea, we have established non-radioactive pulse labeling of RNA, using the nucleotide analog 4-thiouracil (4TU) in two commonly used model archaea: the halophile Euryarchaeota , and the thermo-acidophile Crenarchaeota . In this work, we show that 4TU pulse labeling can be efficiently performed in these two organisms in a dose- and time-dependent manner. In addition, our results suggest that uracil prototrophy had no critical impact on the overall 4TU incorporation in RNA molecules. Accordingly, our work suggests that 4TU incorporation can be widely performed in archaea, thereby expanding the molecular toolkit to analyze archaeal gene expression network dynamic in unprecedented detail.
古菌是广泛分布的生物,几乎遍布地球上的每一个栖息地。然而,古菌的分子生物学仍相对未被充分表征。RNA代谢是细胞的核心过程,在细菌和真核生物中都已得到广泛分析。相比之下,迄今为止对古菌RNA代谢动态的分析还很有限。为了便于在全系统范围内分析古菌的RNA代谢动态,我们在两种常用的古菌模型中建立了RNA的非放射性脉冲标记方法,即使用核苷酸类似物4-硫尿嘧啶(4TU):嗜盐广古菌门古菌和嗜热嗜酸泉古菌门古菌。在这项工作中,我们表明4TU脉冲标记可以在这两种生物中以剂量和时间依赖的方式有效进行。此外,我们的结果表明尿嘧啶原养型对RNA分子中4TU的整体掺入没有关键影响。因此,我们的工作表明4TU掺入可以在古菌中广泛进行,从而以前所未有的细节扩展了分析古菌基因表达网络动态的分子工具集。