Journal article

Regulation of a polyamine transporter by the conserved 3' UTR-derived sRNA SorX confers resistance to singlet oxygen and organic hydroperoxides in Rhodobacter sphaeroides


Authors listPeng, T; Berghoff, BA; Oh, JI; Weber, L; Schirmer, J; Schwarz, J; Glaeser, J; Klug, G

Publication year2016

Pages988-999

JournalRNA Biology

Volume number13

Issue number10

ISSN1547-6286

Open access statusGreen

DOI Linkhttps://doi.org/10.1080/15476286.2016.1212152

PublisherTaylor and Francis Group


Abstract
Singlet oxygen is generated by bacteriochlorophylls when light and oxygen are simultaneously present in Rhodobacter sphaeroides. Singlet oxygen triggers a specific response that is partly regulated by the alternative sigma factor RpoHI/HII. The sRNA RSs2461 has previously been identified as an RpoHI/HII-dependent sRNA and is derived from the 3 UTR of the mRNA for an OmpR-type transcriptional regulator. Similar to the RpoHI/HII-dependent CcsR and SorY sRNAs, RSs2461 affects the resistance of R. sphaeroides against singlet oxygen and was therefore renamed here SorX. Furthermore, SorX has a strong impact on resistance against organic hydroperoxides that usually occur as secondary damages downstream of singlet oxygen. The 75-nt SorX 3 fragment, which is generated by RNase E cleavage and highly conserved among related species, represents the functional entity. A target search identified potA mRNA, which encodes a subunit of a polyamine transporter, as a direct SorX target and stress resistance via SorX could be linked to potA. The PotABCD transporter is an uptake system for spermidine in E. coli. While spermidine is generally described as beneficial during oxidative stress, we observed significantly increased sensitivity of R. sphaeroides to organic hydroperoxides in the presence of spermidine. We therefore propose that the diminished import of spermidine, due to down-regulation of potA by SorX, counteracts oxidative stress. Together with results from other studies this underlines the importance of regulated transport to bacterial stress defense.



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Citation Styles

Harvard Citation stylePeng, T., Berghoff, B., Oh, J., Weber, L., Schirmer, J., Schwarz, J., et al. (2016) Regulation of a polyamine transporter by the conserved 3' UTR-derived sRNA SorX confers resistance to singlet oxygen and organic hydroperoxides in Rhodobacter sphaeroides, RNA Biology, 13(10), pp. 988-999. https://doi.org/10.1080/15476286.2016.1212152

APA Citation stylePeng, T., Berghoff, B., Oh, J., Weber, L., Schirmer, J., Schwarz, J., Glaeser, J., & Klug, G. (2016). Regulation of a polyamine transporter by the conserved 3' UTR-derived sRNA SorX confers resistance to singlet oxygen and organic hydroperoxides in Rhodobacter sphaeroides. RNA Biology. 13(10), 988-999. https://doi.org/10.1080/15476286.2016.1212152


Last updated on 2025-10-06 at 10:40