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j.jbc.2021.100673.pdf | 1.95 MB | Adobe PDF | 見る/開く |
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DCフィールド | 値 | 言語 |
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dc.contributor.author | Yokoyama, Tatsuhiko | en |
dc.contributor.author | Niinae, Tomoya | en |
dc.contributor.author | Tsumagari, Kazuya | en |
dc.contributor.author | Imami, Koshi | en |
dc.contributor.author | Ishihama, Yasushi | en |
dc.contributor.author | Hizukuri, Yohei | en |
dc.contributor.author | Akiyama, Yoshinori | en |
dc.contributor.alternative | 横山, 達彦 | ja |
dc.contributor.alternative | 新苗, 智也 | ja |
dc.contributor.alternative | 津曲, 和哉 | ja |
dc.contributor.alternative | 今見, 考志 | ja |
dc.contributor.alternative | 石濱, 泰 | ja |
dc.contributor.alternative | 檜作, 洋平 | ja |
dc.contributor.alternative | 秋山, 芳展 | ja |
dc.date.accessioned | 2022-07-04T09:33:02Z | - |
dc.date.available | 2022-07-04T09:33:02Z | - |
dc.date.issued | 2021-01 | - |
dc.identifier.uri | http://hdl.handle.net/2433/274693 | - |
dc.description.abstract | Escherichia coli RseP, a member of the S2P family of intramembrane proteases, is involved in the activation of the σE extracytoplasmic stress response and elimination of signal peptides from the cytoplasmic membrane. However, whether RseP has additional cellular functions is unclear. In this study, we used mass spectrometry-based quantitative proteomic analysis to search for new substrates that might reveal unknown physiological roles for RseP. Our data showed that the levels of several Fec system proteins encoded by the fecABCDE operon (fec operon) were significantly decreased in an RseP-deficient strain. The Fec system is responsible for the uptake of ferric citrate, and the transcription of the fec operon is controlled by FecI, an alternative sigma factor, and its regulator FecR, a single-pass transmembrane protein. Assays with a fec operon expression reporter demonstrated that the proteolytic activity of RseP is essential for the ferric citrate-dependent upregulation of the fec operon. Analysis using the FecR protein and FecR-derived model proteins showed that FecR undergoes sequential processing at the membrane and that RseP participates in the last step of this sequential processing to generate the N-terminal cytoplasmic fragment of FecR that participates in the transcription of the fec operon with FecI. A shortened FecR construct was not dependent on RseP for activation, confirming this cleavage step is the essential and sufficient role of RseP. Our study unveiled that E. coli RseP performs the intramembrane proteolysis of FecR, a novel physiological role that is essential for regulating iron uptake by the ferric citrate transport system. | en |
dc.language.iso | eng | - |
dc.publisher | Elsevier BV | en |
dc.rights | © 2021 THE AUTHORS. Published by Elsevier Inc on behalf of American Society for Biochemistry and Molecular Biology. | en |
dc.rights | This is an open access article under the Creative Commons Attribution 4.0 International license. | en |
dc.rights.uri | http://creativecommons.org/licenses/by/4.0/ | - |
dc.subject | metalloprotease | en |
dc.subject | proteomics | en |
dc.subject | metal homeostasis | en |
dc.subject | bacterial signal transduction | en |
dc.subject | siderophore | en |
dc.subject | site-2 protease | en |
dc.subject | regulated intramembrane proteolysis | en |
dc.subject | intramembrane-cleaving proteases | en |
dc.subject | iron uptake | en |
dc.subject | multistep processing | en |
dc.title | The Escherichia coli S2P intramembrane protease RseP regulates ferric citrate uptake by cleaving the sigma factor regulator FecR | en |
dc.type | journal article | - |
dc.type.niitype | Journal Article | - |
dc.identifier.jtitle | Journal of Biological Chemistry | en |
dc.identifier.volume | 296 | - |
dc.relation.doi | 10.1016/j.jbc.2021.100673 | - |
dc.textversion | publisher | - |
dc.identifier.artnum | 100673 | - |
dc.identifier.pmid | 33865858 | - |
dcterms.accessRights | open access | - |
datacite.awardNumber | 21J15841 | - |
datacite.awardNumber | 18K14674 | - |
datacite.awardNumber | 20H03241 | - |
datacite.awardNumber | 20H04844 | - |
datacite.awardNumber | 17H05667 | - |
datacite.awardNumber | 17K15091 | - |
datacite.awardNumber | 19K06562 | - |
datacite.awardNumber | 18H02404 | - |
datacite.awardNumber.uri | https://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-21J15841/ | - |
datacite.awardNumber.uri | https://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-18K14674/ | - |
datacite.awardNumber.uri | https://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-20H03241/ | - |
datacite.awardNumber.uri | https://kaken.nii.ac.jp/grant/KAKENHI-PUBLICLY-20H04844/ | - |
datacite.awardNumber.uri | https://kaken.nii.ac.jp/grant/KAKENHI-PUBLICLY-17H05667/ | - |
datacite.awardNumber.uri | https://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-17K15091/ | - |
datacite.awardNumber.uri | https://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-19K06562/ | - |
datacite.awardNumber.uri | https://kaken.nii.ac.jp/grant/KAKENHI-PROJECT-18H02404/ | - |
dc.identifier.pissn | 0021-9258 | - |
dc.identifier.eissn | 1083-351X | - |
jpcoar.funderName | 日本学術振興会 | ja |
jpcoar.funderName | 日本学術振興会 | ja |
jpcoar.funderName | 日本学術振興会 | ja |
jpcoar.funderName | 日本学術振興会 | ja |
jpcoar.funderName | 日本学術振興会 | ja |
jpcoar.funderName | 日本学術振興会 | ja |
jpcoar.funderName | 日本学術振興会 | ja |
jpcoar.funderName | 日本学術振興会 | ja |
jpcoar.awardTitle | 膜内切断プロテアーゼによる新奇ペプチド性基質の切断反応から迫る休眠細胞の覚醒機構 | ja |
jpcoar.awardTitle | ミトリボソームインタラクトーム解析法の開発と生合成・翻訳制御因子の同定 | ja |
jpcoar.awardTitle | 共翻訳修飾の大規模計測技術の開発 | ja |
jpcoar.awardTitle | 摂動による迅速な翻訳応答を捉えるプロテオームリボソームプロファイリング法の開発 | ja |
jpcoar.awardTitle | タンパク質新生鎖の末端プロテオーム解析 | ja |
jpcoar.awardTitle | 細菌ロンボイドプロテアーゼGlpGによるべん毛III型分泌装置の機能制御機構の解析 | ja |
jpcoar.awardTitle | 細菌III型分泌装置構成因子が受ける新奇な翻訳後多段階プロセシングの分子機構 | ja |
jpcoar.awardTitle | 大腸菌膜内切断プロテアーゼ RsePの生理機能と特異的基質切断機構 | ja |
出現コレクション: | 学術雑誌掲載論文等 |

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