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Mining RNA‐seq data reveals the massive regulon of GcvB small RNA and its physiological significance in maintaining amino acid homeostasis in Escherichia coli

Bacterial small RNAs regulate the expression of multiple genes through imperfect base‐pairing with target mRNAs mediated by RNA chaperone proteins such as Hfq. GcvB is the master sRNA regulator of amino acid metabolism and transport in a wide range of Gram‐negative bacteria. Recently, independent RN...

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Autores principales: Miyakoshi, Masatoshi, Okayama, Haruna, Lejars, Maxence, Kanda, Takeshi, Tanaka, Yuki, Itaya, Kaori, Okuno, Miki, Itoh, Takehiko, Iwai, Noritaka, Wachi, Masaaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9299463/
https://www.ncbi.nlm.nih.gov/pubmed/34543491
http://dx.doi.org/10.1111/mmi.14814
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author Miyakoshi, Masatoshi
Okayama, Haruna
Lejars, Maxence
Kanda, Takeshi
Tanaka, Yuki
Itaya, Kaori
Okuno, Miki
Itoh, Takehiko
Iwai, Noritaka
Wachi, Masaaki
author_facet Miyakoshi, Masatoshi
Okayama, Haruna
Lejars, Maxence
Kanda, Takeshi
Tanaka, Yuki
Itaya, Kaori
Okuno, Miki
Itoh, Takehiko
Iwai, Noritaka
Wachi, Masaaki
author_sort Miyakoshi, Masatoshi
collection PubMed
description Bacterial small RNAs regulate the expression of multiple genes through imperfect base‐pairing with target mRNAs mediated by RNA chaperone proteins such as Hfq. GcvB is the master sRNA regulator of amino acid metabolism and transport in a wide range of Gram‐negative bacteria. Recently, independent RNA‐seq approaches identified a plethora of transcripts interacting with GcvB in Escherichia coli. In this study, the compilation of RIL‐seq, CLASH, and MAPS data sets allowed us to identify GcvB targets with high accuracy. We validated 21 new GcvB targets repressed at the posttranscriptional level, raising the number of direct targets to >50 genes in E. coli. Among its multiple seed sequences, GcvB utilizes either R1 or R3 to regulate most of these targets. Furthermore, we demonstrated that both R1 and R3 seed sequences are required to fully repress the expression of gdhA, cstA, and sucC genes. In contrast, the ilvLXGMEDA polycistronic mRNA is targeted by GcvB through at least four individual binding sites in the mRNA. Finally, we revealed that GcvB is involved in the susceptibility of peptidase‐deficient E. coli strain (Δpeps) to Ala‐Gln dipeptide by regulating both Dpp dipeptide importer and YdeE dipeptide exporter via R1 and R3 seed sequences, respectively.
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spelling pubmed-92994632022-07-21 Mining RNA‐seq data reveals the massive regulon of GcvB small RNA and its physiological significance in maintaining amino acid homeostasis in Escherichia coli Miyakoshi, Masatoshi Okayama, Haruna Lejars, Maxence Kanda, Takeshi Tanaka, Yuki Itaya, Kaori Okuno, Miki Itoh, Takehiko Iwai, Noritaka Wachi, Masaaki Mol Microbiol Research Articles Bacterial small RNAs regulate the expression of multiple genes through imperfect base‐pairing with target mRNAs mediated by RNA chaperone proteins such as Hfq. GcvB is the master sRNA regulator of amino acid metabolism and transport in a wide range of Gram‐negative bacteria. Recently, independent RNA‐seq approaches identified a plethora of transcripts interacting with GcvB in Escherichia coli. In this study, the compilation of RIL‐seq, CLASH, and MAPS data sets allowed us to identify GcvB targets with high accuracy. We validated 21 new GcvB targets repressed at the posttranscriptional level, raising the number of direct targets to >50 genes in E. coli. Among its multiple seed sequences, GcvB utilizes either R1 or R3 to regulate most of these targets. Furthermore, we demonstrated that both R1 and R3 seed sequences are required to fully repress the expression of gdhA, cstA, and sucC genes. In contrast, the ilvLXGMEDA polycistronic mRNA is targeted by GcvB through at least four individual binding sites in the mRNA. Finally, we revealed that GcvB is involved in the susceptibility of peptidase‐deficient E. coli strain (Δpeps) to Ala‐Gln dipeptide by regulating both Dpp dipeptide importer and YdeE dipeptide exporter via R1 and R3 seed sequences, respectively. John Wiley and Sons Inc. 2021-11-09 2022-01 /pmc/articles/PMC9299463/ /pubmed/34543491 http://dx.doi.org/10.1111/mmi.14814 Text en © 2021 The Authors. Molecular Microbiology published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Research Articles
Miyakoshi, Masatoshi
Okayama, Haruna
Lejars, Maxence
Kanda, Takeshi
Tanaka, Yuki
Itaya, Kaori
Okuno, Miki
Itoh, Takehiko
Iwai, Noritaka
Wachi, Masaaki
Mining RNA‐seq data reveals the massive regulon of GcvB small RNA and its physiological significance in maintaining amino acid homeostasis in Escherichia coli
title Mining RNA‐seq data reveals the massive regulon of GcvB small RNA and its physiological significance in maintaining amino acid homeostasis in Escherichia coli
title_full Mining RNA‐seq data reveals the massive regulon of GcvB small RNA and its physiological significance in maintaining amino acid homeostasis in Escherichia coli
title_fullStr Mining RNA‐seq data reveals the massive regulon of GcvB small RNA and its physiological significance in maintaining amino acid homeostasis in Escherichia coli
title_full_unstemmed Mining RNA‐seq data reveals the massive regulon of GcvB small RNA and its physiological significance in maintaining amino acid homeostasis in Escherichia coli
title_short Mining RNA‐seq data reveals the massive regulon of GcvB small RNA and its physiological significance in maintaining amino acid homeostasis in Escherichia coli
title_sort mining rna‐seq data reveals the massive regulon of gcvb small rna and its physiological significance in maintaining amino acid homeostasis in escherichia coli
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9299463/
https://www.ncbi.nlm.nih.gov/pubmed/34543491
http://dx.doi.org/10.1111/mmi.14814
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