Cargando…

Insight into the Global Negative Regulation of Iron Scavenger 7-HT Biosynthesis by the SigW/RsiW System in Pseudomonas donghuensis HYS

7-Hydroxytropolone (7-HT) is a unique iron scavenger synthesized by Pseudomonas donghuensis HYS that has various biological activities in addition to functioning as a siderophore. P. donghuensis HYS is more pathogenic than P. aeruginosa toward Caenorhabditis elegans, an observation that is closely l...

Descripción completa

Detalles Bibliográficos
Autores principales: Teng, Shiyu, Wu, Tingting, Gao, Donghao, Wu, Siyi, Xiao, Yaqian, Long, Yan, Xie, Zhixiong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9861184/
https://www.ncbi.nlm.nih.gov/pubmed/36674714
http://dx.doi.org/10.3390/ijms24021184
_version_ 1784874778223443968
author Teng, Shiyu
Wu, Tingting
Gao, Donghao
Wu, Siyi
Xiao, Yaqian
Long, Yan
Xie, Zhixiong
author_facet Teng, Shiyu
Wu, Tingting
Gao, Donghao
Wu, Siyi
Xiao, Yaqian
Long, Yan
Xie, Zhixiong
author_sort Teng, Shiyu
collection PubMed
description 7-Hydroxytropolone (7-HT) is a unique iron scavenger synthesized by Pseudomonas donghuensis HYS that has various biological activities in addition to functioning as a siderophore. P. donghuensis HYS is more pathogenic than P. aeruginosa toward Caenorhabditis elegans, an observation that is closely linked to the biosynthesis of 7-HT. The nonfluorescent siderophore (nfs) gene cluster is responsible for the orderly biosynthesis of 7-HT and represents a competitive advantage that contributes to the increased survival of P. donghuensis HYS; however, the regulatory mechanisms of 7-HT biosynthesis remain unclear. This study is the first to propose that the ECF σ factor has a regulatory effect on 7-HT biosynthesis. In total, 20 ECF σ factors were identified through genome-wide scanning, and their responses to extracellular ferrous ions were characterized. We found that SigW was both significantly upregulated under high-iron conditions and repressed by an adjacent anti-σ factor. RNA-Seq results suggest that the SigW/RsiW system is involved in iron metabolism and 7-HT biosynthesis. Combined with the siderophore phenotype, we also found that SigW could inhibit siderophore synthesis, and this inhibition can be relieved by RsiW. EMSA assays proved that SigW, when highly expressed, can directly bind to the promoter region of five operons of the nfs cluster to inhibit the transcription of the corresponding genes and consequently suppress 7-HT biosynthesis. In addition, SigW not only directly negatively regulates structural genes related to 7-HT synthesis but also inhibits the transcription of regulatory proteins, including of the Gac/Rsm cascade system. Taken together, our results highlight that the biosynthesis of 7-HT is negatively regulated by SigW and that the SigW/RsiW system is involved in mechanisms for the regulation of iron homeostasis in P. donghuensis HYS. As a result of this work, we identified a novel mechanism for the global negative regulation of 7-HT biosynthesis, complementing our understanding of the function of ECF σ factors in Pseudomonas.
format Online
Article
Text
id pubmed-9861184
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-98611842023-01-22 Insight into the Global Negative Regulation of Iron Scavenger 7-HT Biosynthesis by the SigW/RsiW System in Pseudomonas donghuensis HYS Teng, Shiyu Wu, Tingting Gao, Donghao Wu, Siyi Xiao, Yaqian Long, Yan Xie, Zhixiong Int J Mol Sci Article 7-Hydroxytropolone (7-HT) is a unique iron scavenger synthesized by Pseudomonas donghuensis HYS that has various biological activities in addition to functioning as a siderophore. P. donghuensis HYS is more pathogenic than P. aeruginosa toward Caenorhabditis elegans, an observation that is closely linked to the biosynthesis of 7-HT. The nonfluorescent siderophore (nfs) gene cluster is responsible for the orderly biosynthesis of 7-HT and represents a competitive advantage that contributes to the increased survival of P. donghuensis HYS; however, the regulatory mechanisms of 7-HT biosynthesis remain unclear. This study is the first to propose that the ECF σ factor has a regulatory effect on 7-HT biosynthesis. In total, 20 ECF σ factors were identified through genome-wide scanning, and their responses to extracellular ferrous ions were characterized. We found that SigW was both significantly upregulated under high-iron conditions and repressed by an adjacent anti-σ factor. RNA-Seq results suggest that the SigW/RsiW system is involved in iron metabolism and 7-HT biosynthesis. Combined with the siderophore phenotype, we also found that SigW could inhibit siderophore synthesis, and this inhibition can be relieved by RsiW. EMSA assays proved that SigW, when highly expressed, can directly bind to the promoter region of five operons of the nfs cluster to inhibit the transcription of the corresponding genes and consequently suppress 7-HT biosynthesis. In addition, SigW not only directly negatively regulates structural genes related to 7-HT synthesis but also inhibits the transcription of regulatory proteins, including of the Gac/Rsm cascade system. Taken together, our results highlight that the biosynthesis of 7-HT is negatively regulated by SigW and that the SigW/RsiW system is involved in mechanisms for the regulation of iron homeostasis in P. donghuensis HYS. As a result of this work, we identified a novel mechanism for the global negative regulation of 7-HT biosynthesis, complementing our understanding of the function of ECF σ factors in Pseudomonas. MDPI 2023-01-07 /pmc/articles/PMC9861184/ /pubmed/36674714 http://dx.doi.org/10.3390/ijms24021184 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Teng, Shiyu
Wu, Tingting
Gao, Donghao
Wu, Siyi
Xiao, Yaqian
Long, Yan
Xie, Zhixiong
Insight into the Global Negative Regulation of Iron Scavenger 7-HT Biosynthesis by the SigW/RsiW System in Pseudomonas donghuensis HYS
title Insight into the Global Negative Regulation of Iron Scavenger 7-HT Biosynthesis by the SigW/RsiW System in Pseudomonas donghuensis HYS
title_full Insight into the Global Negative Regulation of Iron Scavenger 7-HT Biosynthesis by the SigW/RsiW System in Pseudomonas donghuensis HYS
title_fullStr Insight into the Global Negative Regulation of Iron Scavenger 7-HT Biosynthesis by the SigW/RsiW System in Pseudomonas donghuensis HYS
title_full_unstemmed Insight into the Global Negative Regulation of Iron Scavenger 7-HT Biosynthesis by the SigW/RsiW System in Pseudomonas donghuensis HYS
title_short Insight into the Global Negative Regulation of Iron Scavenger 7-HT Biosynthesis by the SigW/RsiW System in Pseudomonas donghuensis HYS
title_sort insight into the global negative regulation of iron scavenger 7-ht biosynthesis by the sigw/rsiw system in pseudomonas donghuensis hys
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9861184/
https://www.ncbi.nlm.nih.gov/pubmed/36674714
http://dx.doi.org/10.3390/ijms24021184
work_keys_str_mv AT tengshiyu insightintotheglobalnegativeregulationofironscavenger7htbiosynthesisbythesigwrsiwsysteminpseudomonasdonghuensishys
AT wutingting insightintotheglobalnegativeregulationofironscavenger7htbiosynthesisbythesigwrsiwsysteminpseudomonasdonghuensishys
AT gaodonghao insightintotheglobalnegativeregulationofironscavenger7htbiosynthesisbythesigwrsiwsysteminpseudomonasdonghuensishys
AT wusiyi insightintotheglobalnegativeregulationofironscavenger7htbiosynthesisbythesigwrsiwsysteminpseudomonasdonghuensishys
AT xiaoyaqian insightintotheglobalnegativeregulationofironscavenger7htbiosynthesisbythesigwrsiwsysteminpseudomonasdonghuensishys
AT longyan insightintotheglobalnegativeregulationofironscavenger7htbiosynthesisbythesigwrsiwsysteminpseudomonasdonghuensishys
AT xiezhixiong insightintotheglobalnegativeregulationofironscavenger7htbiosynthesisbythesigwrsiwsysteminpseudomonasdonghuensishys