Trinquier Aude, Condon Ciarán, Braun Frédérique
CNRS, Université Paris Cité, Expression Génétique Microbienne, Institut de Biologie Physico-Chimique, Paris, France.
Microbiol Spectr. 2023 Feb 22;11(2):e0513422. doi: 10.1128/spectrum.05134-22.
The impact of translation on mRNA stability can be varied, ranging from a protective effect of ribosomes that shield mRNA from RNases to preferentially exposing sites of RNase cleavage. These effects can change depending on whether ribosomes are actively moving along the mRNA or stalled at particular sequences or structures or awaiting charged tRNAs. We recently observed that depleting Bacillus subtilis cells of their tRNA maturation enzymes RNase P and RNase Z led to altered mRNA levels of a number of assembly factors involved in the biogenesis of the 30S ribosomal subunit. Here, we extended this study to other assembly factor and non-assembly factor mRNAs in B. subtilis. We additionally identified multiple transcriptional and translational layers of regulation of the operon mRNA that occur in response to the depletion of functional tRNAs. The passage of ribosomes across individual mRNAs during translation can have different effects on their degradation, ranging from a protective effect by shielding from ribonucleases to, in some cases, making the mRNA more vulnerable to RNase action. We recently showed that some mRNAs coding for proteins involved in ribosome assembly were highly sensitive to the availability of functional tRNA. Using strains depleted of the major tRNA processing enzymes RNase P and RNase Z, we expanded this observation to a wider set of mRNAs, including some unrelated to ribosome biogenesis. We characterized the impact of tRNA maturase depletion on the operon mRNA and show that it is highly complex, with multiple levels of transcriptional and posttranscriptional effects coming into play.
翻译对mRNA稳定性的影响可能多种多样,从核糖体对mRNA的保护作用(使mRNA免受核糖核酸酶的影响)到优先暴露核糖核酸酶切割位点。这些影响会因核糖体是沿mRNA主动移动、在特定序列或结构处停滞还是等待带电荷的tRNA而有所不同。我们最近观察到,枯草芽孢杆菌细胞中tRNA成熟酶核糖核酸酶P和核糖核酸酶Z的缺失导致参与30S核糖体亚基生物发生的多种组装因子的mRNA水平发生改变。在这里,我们将这项研究扩展到枯草芽孢杆菌中的其他组装因子和非组装因子mRNA。我们还确定了响应功能性tRNA缺失而发生的操纵子mRNA的多个转录和翻译调控层面。核糖体在翻译过程中穿过单个mRNA时,对其降解可能有不同的影响,从通过屏蔽核糖核酸酶起到保护作用,到在某些情况下使mRNA更容易受到核糖核酸酶作用。我们最近表明,一些编码参与核糖体组装的蛋白质的mRNA对功能性tRNA的可用性高度敏感。利用缺失主要tRNA加工酶核糖核酸酶P和核糖核酸酶Z的菌株,我们将这一观察结果扩展到更广泛的一组mRNA,包括一些与核糖体生物发生无关的mRNA。我们表征了tRNA成熟酶缺失对操纵子mRNA的影响,并表明其高度复杂,有多个转录和转录后效应层面发挥作用。