Sun Huaming, Vargas-Blanco Diego A, Zhou Ying, Masiello Catherine S, Kelly Jessica M, Moy Justin K, Korkin Dmitry, Shell Scarlet S
Program in Bioinformatics and Computational Biology, Worcester Polytechnic Institute, Worcester, MA 01609, USA.
Department of Biology and Biotechnology, Worcester Polytechnic Institute, Worcester, MA 01609, USA.
NAR Genom Bioinform. 2024 Nov 4;6(4):lqae147. doi: 10.1093/nargab/lqae147. eCollection 2024 Sep.
Mycobacteria regulate transcript degradation to facilitate adaptation to environmental stress. However, the mechanisms underlying this regulation are unknown. Here we sought to gain understanding of the mechanisms controlling mRNA stability by investigating the transcript properties associated with variance in transcript stability and stress-induced transcript stabilization. We measured mRNA half-lives transcriptome-wide in in log phase growth and hypoxia-induced growth arrest. The transcriptome was globally stabilized in response to hypoxia, but transcripts of essential genes were generally stabilized more than those of non-essential genes. We then developed machine learning models that enabled us to identify the non-linear collective effect of a compendium of transcript properties on transcript stability and stabilization. We identified properties that were more predictive of half-life in log phase as well as properties that were more predictive in hypoxia, and many of these varied between leadered and leaderless transcripts. In summary, we found that transcript properties are differentially associated with transcript stability depending on both the transcript type and the growth condition. Our results reveal the complex interplay between transcript features and microenvironment that shapes transcript stability in mycobacteria.
分枝杆菌通过调节转录本降解来促进对环境压力的适应。然而,这种调节背后的机制尚不清楚。在这里,我们试图通过研究与转录本稳定性变化和应激诱导的转录本稳定相关的转录本特性,来了解控制mRNA稳定性的机制。我们在对数期生长和缺氧诱导的生长停滞状态下,全转录组范围内测量了mRNA半衰期。转录组在缺氧反应中整体稳定,但必需基因的转录本通常比非必需基因的转录本稳定得多。然后,我们开发了机器学习模型,使我们能够识别转录本特性汇总对转录本稳定性和稳定化的非线性集体效应。我们确定了在对数期更能预测半衰期的特性,以及在缺氧条件下更能预测的特性,其中许多特性在有前导序列和无前导序列的转录本之间有所不同。总之,我们发现转录本特性与转录本稳定性的差异关联取决于转录本类型和生长条件。我们的结果揭示了转录本特征与微环境之间复杂的相互作用,这种相互作用塑造了分枝杆菌中转录本的稳定性。