Agrochemistry and Biochemistry Department, Biochemistry and Molecular Biology Area, Faculty of Science, University of Alicante, Ap 99, 03080, Alicante, Spain.
Mol Genet Genomics. 2020 May;295(3):775-785. doi: 10.1007/s00438-020-01659-9. Epub 2020 Mar 13.
The regulatory networks involved in the uptake and metabolism of different nitrogen sources in response to their availability are crucial in all organisms. Nitrogen metabolism pathways have been studied in detail in archaea such as the extreme halophilic archaeon Haloferax mediterranei. However, knowledge about nitrogen metabolism regulation in haloarchaea is very scarce, and no transcriptional regulators involved in nitrogen metabolism have been identified to date. Advances in the molecular biology field have revealed that many small RNAs (sRNAs) are involved in the regulation of a diverse metabolic pathways. Surprisingly, no studies on regulation mediated by sRNAs have focused on the response to environmental fluctuations in nitrogen in haloarchaea. To identify sRNAs involved in the transcriptional regulation of nitrogen assimilation genes in Haloferax mediterranei and, thus, propose a novel regulatory mechanism, RNA-Seq was performed using cells grown in the presence of two different nitrogen sources. The differential transcriptional expression analysis of the RNA-Seq data revealed differences in the transcription patterns of 102 sRNAs according to the nitrogen source, and the molecular functions, cellular locations and biological processes with which the target genes were associated were predicted. These results enabled the identification of four sRNAs that could be directly related to the regulation of genes involved in nitrogen metabolism. This work provides the first proposed regulatory mechanism of nitrogen assimilation-related gene expression by sRNAs in haloarchaea as an alternative to transcriptional regulation mediated by proteins.
参与不同氮源摄取和代谢的调控网络,以响应其可用性,这在所有生物体中都是至关重要的。古菌(如极端嗜盐古菌Haloferax mediterranei)中的氮代谢途径已被详细研究。然而,关于 haloarchaea 中氮代谢调控的知识非常匮乏,迄今为止尚未鉴定出参与氮代谢的转录调节剂。分子生物学领域的进展表明,许多小 RNA(sRNA)参与了多种代谢途径的调控。令人惊讶的是,目前还没有关于 sRNA 介导的氮在 haloarchaea 中对环境波动的响应调控的研究。为了鉴定与 Haloferax mediterranei 氮同化基因转录调控相关的 sRNA,并提出一种新的调控机制,我们使用在两种不同氮源存在的情况下培养的细胞进行了 RNA-Seq。根据氮源,对 RNA-Seq 数据的差异转录表达分析显示,102 个 sRNA 的转录模式存在差异,预测了靶基因的分子功能、细胞位置和与之相关的生物学过程。这些结果鉴定了四个可能与氮代谢相关基因的调控直接相关的 sRNA。这项工作提供了 haloarchaea 中 sRNA 调控氮同化相关基因表达的第一个提出的调控机制,作为蛋白质介导的转录调控的替代方案。