Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Center for RNA Molecular Biology, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Nat Microbiol. 2016 Jan 11;1:15007. doi: 10.1038/nmicrobiol.2015.7.
Intrinsic transcription terminators consist of an RNA hairpin followed by a U-rich tract, and these signals can trigger termination without the involvement of additional factors. Although NusA is known to stimulate intrinsic termination in vitro, the in vivo targets and global impact of NusA are not known because it is essential for viability. Using genome-wide 3' end-mapping on an engineered Bacillus subtilis NusA depletion strain, we show that weak suboptimal terminators are the principle NusA substrates. Moreover, a subclass of weak non-canonical terminators was identified that completely depend on NusA for effective termination. NusA-dependent terminators tend to have weak hairpins and/or distal U-tract interruptions, supporting a model in which NusA is directly involved in the termination mechanism. Depletion of NusA altered global gene expression directly and indirectly via readthrough of suboptimal terminators. Readthrough of NusA-dependent terminators caused misregulation of genes involved in essential cellular functions, especially DNA replication and metabolism. We further show that nusA is autoregulated by a transcription attenuation mechanism that does not rely on antiterminator structures. Instead, NusA-stimulated termination in its 5' UTR dictates the extent of transcription into the operon, thereby ensuring tight control of cellular NusA levels.
内在转录终止子由 RNA 发夹结构后面跟着一个 U 丰富的区域组成,这些信号可以在不涉及其他因素的情况下触发终止。虽然已经知道 NusA 在体外可以刺激内在终止,但由于它对生存能力是必需的,因此 NusA 在体内的靶标和全局影响尚不清楚。我们使用工程枯草芽孢杆菌 NusA 耗竭菌株进行全基因组 3'末端作图,结果表明,弱次优终止子是 NusA 的主要底物。此外,还鉴定出一类完全依赖 NusA 进行有效终止的弱非规范终止子。依赖 NusA 的终止子往往具有较弱的发夹结构和/或远端 U 区中断,支持 NusA 直接参与终止机制的模型。NusA 的耗竭直接和间接地通过次优终止子的通读改变了全局基因表达。依赖 NusA 的终止子的通读导致参与基本细胞功能的基因失调,特别是 DNA 复制和代谢。我们进一步表明,nusA 是通过不依赖于抗终止子结构的转录衰减机制进行自我调控的。相反,NusA 在其 5'UTR 中刺激终止决定了转录进入操纵子的程度,从而确保对细胞内 NusA 水平的严格控制。