Department of Molecular, Cellular and Developmental Biology, Department of Molecular Biophysics and Biochemistry and Howard Hughes Medical Institute, Yale University, New Haven, CT 06520, USA.
Nucleic Acids Res. 2012 Aug;40(14):6898-907. doi: 10.1093/nar/gks352. Epub 2012 May 4.
OLE (Ornate, Large, Extremophilic) RNAs represent a recently discovered non-coding RNA class found in extremophilic anaerobic bacteria, including certain human pathogens. OLE RNAs exhibit several unusual characteristics that indicate a potentially novel function, including exceptionally high expression and localization to cell membranes via interaction with a protein partner called OLE-associated protein (OAP). In the current study, new genetic and phenotypic characteristics of OLE RNA from Bacillus halodurans C-125 were established. OLE RNA is transcribed at high levels from its own promoter under normal growth conditions and the transcript is exceptionally stable compared to most other RNAs. Expression is increased by ∼ 7-fold when cells are exposed to near lethal concentrations of short-chain alcohols such as ethanol or methanol. Strains wherein the genes for OLE and/or OAP are deleted are more susceptible to growth inhibition by alcohol and also become more sensitive to cold. Normal growth characteristics can be restored by expressing the genes for OLE and OAP from plasmids or from elsewhere on the chromosome. Our findings confirm a functional link between OLE and OAP and reveal the importance of a large non-coding RNA in the response to alcohol-induced stress.
OLE(华丽、大型、极端)RNA 代表了最近在极端厌氧细菌中发现的一类非编码 RNA,包括某些人类病原体。OLE RNA 表现出一些不寻常的特征,表明其具有潜在的新功能,包括通过与一种称为 OLE 相关蛋白(OAP)的蛋白质伴侣相互作用而表现出异常高的表达和定位于细胞膜上。在本研究中,建立了来自巴氏芽孢杆菌 C-125 的 OLE RNA 的新的遗传和表型特征。在正常生长条件下,OLE RNA 从其自身启动子高水平转录,与大多数其他 RNA 相比,转录物异常稳定。当细胞暴露于短链醇(如乙醇或甲醇)的接近致死浓度时,表达增加约 7 倍。缺失 OLE 和/或 OAP 基因的菌株对酒精的生长抑制更敏感,对寒冷也更敏感。通过从质粒或染色体的其他位置表达 OLE 和 OAP 的基因,可以恢复正常的生长特性。我们的发现证实了 OLE 和 OAP 之间的功能联系,并揭示了大非编码 RNA 在应对酒精诱导的应激中的重要性。