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谷氨酸棒状杆菌的小6C RNA参与了SOS反应。

The small 6C RNA of Corynebacterium glutamicum is involved in the SOS response.

作者信息

Pahlke Jennifer, Dostálová Hana, Holátko Jiří, Degner Ursula, Bott Michael, Pátek Miroslav, Polen Tino

机构信息

a Institute of Bio- and Geosciences IBG-1: Biotechnology, Forschungszentrum Jülich GmbH , Jülich , Germany.

b Institute of Microbiology of the CAS , v. v. i. Videnska, Czech Republic.

出版信息

RNA Biol. 2016 Sep;13(9):848-60. doi: 10.1080/15476286.2016.1205776. Epub 2016 Jun 30.

Abstract

The 6C RNA family is a class of small RNAs highly conserved in Actinobacteria, including the genera Mycobacterium, Streptomyces and Corynebacterium whose physiological function has not yet been elucidated. We found that strong transcription of the cgb_03605 gene, which encodes 6C RNA in C. glutamicum, was driven by the SigA- and SigB-dependent promoter Pcgb_03605. 6C RNA was detected at high level during exponential growth phase (180 to 240 molcules per cell) which even increased at the entry of the stationary phase. 6C RNA level did not decrease within 240 min after transcription had been stopped with rifampicin, which suggests high 6C RNA stability. The expression of cgb_03605 further increased approximately twofold in the presence of DNA-damaging mitomycin C (MMC) and nearly threefold in the absence of LexA. Deletion of the 6C RNA gene cgb_03605 resulted in a higher sensitivity of C. glutamicum toward MMC and UV radiation. These results indicate that 6C RNA is involved in the DNA damage response. Both 6C RNA level-dependent pausing of cell growth and branched cell morphology in response to MMC suggest that 6C RNA may also be involved in a control of cell division.

摘要

6C RNA家族是一类在放线菌中高度保守的小RNA,包括分枝杆菌属、链霉菌属和棒状杆菌属,其生理功能尚未阐明。我们发现,谷氨酸棒杆菌中编码6C RNA的cgb_03605基因的强转录由依赖SigA和SigB的启动子Pcgb_03605驱动。在指数生长期检测到高水平的6C RNA(每个细胞180至240个分子),在稳定期开始时甚至增加。在用利福平停止转录后240分钟内,6C RNA水平没有下降,这表明6C RNA具有高稳定性。在存在DNA损伤剂丝裂霉素C(MMC)的情况下,cgb_03605的表达进一步增加约两倍,在不存在LexA的情况下增加近三倍。删除6C RNA基因cgb_03605导致谷氨酸棒杆菌对MMC和紫外线辐射的敏感性更高。这些结果表明6C RNA参与DNA损伤反应。6C RNA水平依赖性的细胞生长停滞和对MMC的分支细胞形态都表明6C RNA可能也参与细胞分裂的控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddc4/5014011/2e6a9ebeba0c/krnb-13-09-1205776-g001.jpg

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