Sharma Prayatna, Mondal Krishnendu, Kumar Santosh, Tamang Sonia, Najar Ishfaq Nabi, Das Sayak, Thakur Nagendra
Department of Microbiology, School of Life Sciences, Sikkim University, 6th Mile, Samdur, Gangtok, 737102, Sikkim, India.
Department of Microbiology, Vidyasagar University, Midnapore, West Bengal 721102, India.
Biochim Biophys Acta Gene Regul Mech. 2022 Oct;1865(7):194871. doi: 10.1016/j.bbagrm.2022.194871. Epub 2022 Aug 28.
An array of external factors, an important one being temperature, decide the fate of survival in a microbe. The ability of microbes to sense external cues and to regulate the expression of genes accordingly is critical for its likely survival. Among a myriad of cellular defence mechanisms, a strategy to recuperate stress involves RNA regulatory elements. RNAs own a repertoire of functions in a cell as messengers, for transfer or as a component of ribosomes. A shift from its indigenous role is as regulators of gene expression, where in the cis-encoded RNA termed as "RNA Thermometers" play a pivotal role in translational level of gene expression. In this paper, we review the occurrence, the different types and molecular mechanism of gene regulation by RNATs, with a special focus limited to the domain Bacteria. We discuss the role of RNATs in mediating expression of temperature-responsive genes like heat shock/cold attributing in heat/cold shock response and a cascade of virulence genes to evade host defence mechanisms.
一系列外部因素(其中重要的一个是温度)决定了微生物的生存命运。微生物感知外部线索并相应调节基因表达的能力对其生存可能性至关重要。在众多细胞防御机制中,一种应对压力的策略涉及RNA调控元件。RNA在细胞中具有多种功能,可作为信使、用于转运或作为核糖体的组成部分。其从固有角色转变为基因表达的调节因子,其中被称为“RNA温度计”的顺式编码RNA在基因表达的翻译水平上发挥着关键作用。在本文中,我们综述了RNA温度计在基因调控方面的存在情况、不同类型及其分子机制,特别聚焦于细菌领域。我们讨论了RNA温度计在介导温度响应基因(如热休克/冷休克反应中的热休克/冷休克归因基因以及一系列逃避宿主防御机制的毒力基因)表达中的作用。