Small RNA F6 Provides Mycobacterium smegmatis Entry into Dormancy

Regulatory small non-coding RNAs play a significant role in bacterial adaptation to changing environmental conditions. Various stresses such as hypoxia and nutrient starvation cause a reduction in the metabolic activity of , leading to entry into dormancy. We investigated the functional role of F6,...

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Veröffentlicht in:International journal of molecular sciences 2021-10, Vol.22 (21), p.11536
Hauptverfasser: Grigorov, Artem, Bychenko, Oksana, Salina, Elena G, Skvortsova, Yulia, Mazurova, Arina, Skvortsov, Timofey, Kaprelyants, Arseny, Azhikina, Tatyana
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Sprache:eng
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Zusammenfassung:Regulatory small non-coding RNAs play a significant role in bacterial adaptation to changing environmental conditions. Various stresses such as hypoxia and nutrient starvation cause a reduction in the metabolic activity of , leading to entry into dormancy. We investigated the functional role of F6, a small RNA of , and constructed an F6 deletion strain of . Using the RNA-seq approach, we demonstrated that gene expression changes that accompany F6 deletion contributed to bacterial resistance against oxidative stress. We also found that F6 directly interacted with 5'-UTR of mRNA encoding RpfE2, a resuscitation-promoting factor, which led to the downregulation of RpfE2 expression. The F6 deletion strain was characterized by the reduced ability to enter into dormancy (non-culturability) in the potassium deficiency model compared to the wild-type strain, indicating that F6 significantly contributes to bacterial adaptation to non-optimal growth conditions.
ISSN:1422-0067
1661-6596
1422-0067
DOI:10.3390/ijms222111536