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LcrQ Coordinates with the YopD-LcrH Complex To Repress lcrF Expression and Control Type III Secretion by Yersinia pseudotuberculosis

Human-pathogenic Yersinia species employ a plasmid-encoded type III secretion system (T3SS) to negate immune cell function during infection. A critical element in this process is the coordinated regulation of T3SS gene expression, which involves both transcriptional and posttranscriptional mechanism...

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Detalles Bibliográficos
Autores principales: Fei, Keke, Yan, Huan, Zeng, Xiaoyan, Huang, Shaojia, Tang, Wei, Francis, Matthew S., Chen, Shiyun, Hu, Yangbo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8262909/
https://www.ncbi.nlm.nih.gov/pubmed/34154409
http://dx.doi.org/10.1128/mBio.01457-21
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author Fei, Keke
Yan, Huan
Zeng, Xiaoyan
Huang, Shaojia
Tang, Wei
Francis, Matthew S.
Chen, Shiyun
Hu, Yangbo
author_facet Fei, Keke
Yan, Huan
Zeng, Xiaoyan
Huang, Shaojia
Tang, Wei
Francis, Matthew S.
Chen, Shiyun
Hu, Yangbo
author_sort Fei, Keke
collection PubMed
description Human-pathogenic Yersinia species employ a plasmid-encoded type III secretion system (T3SS) to negate immune cell function during infection. A critical element in this process is the coordinated regulation of T3SS gene expression, which involves both transcriptional and posttranscriptional mechanisms. LcrQ is one of the earliest identified negative regulators of Yersinia T3SS, but its regulatory mechanism is still unclear. In a previous study, we showed that LcrQ antagonizes the activation role played by the master transcriptional regulator LcrF. In this study, we confirm that LcrQ directly interacts with LcrH, the chaperone of YopD, to facilitate the negative regulatory role of the YopD-LcrH complex in repressing lcrF expression at the posttranscriptional level. Negative regulation is strictly dependent on the YopD-LcrH complex, more so than on LcrQ. The YopD-LcrH complex helps to retain cytoplasmic levels of LcrQ to facilitate the negative regulatory effect. Interestingly, RNase E and its associated protein RhlB participate in this negative regulatory loop through a direct interaction with LcrH and LcrQ. Hence, we present a negative regulatory loop that physically connects LcrQ to the posttranscriptional regulation of LcrF, and this mechanism incorporates RNase E involved in mRNA decay.
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spelling pubmed-82629092021-07-23 LcrQ Coordinates with the YopD-LcrH Complex To Repress lcrF Expression and Control Type III Secretion by Yersinia pseudotuberculosis Fei, Keke Yan, Huan Zeng, Xiaoyan Huang, Shaojia Tang, Wei Francis, Matthew S. Chen, Shiyun Hu, Yangbo mBio Research Article Human-pathogenic Yersinia species employ a plasmid-encoded type III secretion system (T3SS) to negate immune cell function during infection. A critical element in this process is the coordinated regulation of T3SS gene expression, which involves both transcriptional and posttranscriptional mechanisms. LcrQ is one of the earliest identified negative regulators of Yersinia T3SS, but its regulatory mechanism is still unclear. In a previous study, we showed that LcrQ antagonizes the activation role played by the master transcriptional regulator LcrF. In this study, we confirm that LcrQ directly interacts with LcrH, the chaperone of YopD, to facilitate the negative regulatory role of the YopD-LcrH complex in repressing lcrF expression at the posttranscriptional level. Negative regulation is strictly dependent on the YopD-LcrH complex, more so than on LcrQ. The YopD-LcrH complex helps to retain cytoplasmic levels of LcrQ to facilitate the negative regulatory effect. Interestingly, RNase E and its associated protein RhlB participate in this negative regulatory loop through a direct interaction with LcrH and LcrQ. Hence, we present a negative regulatory loop that physically connects LcrQ to the posttranscriptional regulation of LcrF, and this mechanism incorporates RNase E involved in mRNA decay. American Society for Microbiology 2021-06-22 /pmc/articles/PMC8262909/ /pubmed/34154409 http://dx.doi.org/10.1128/mBio.01457-21 Text en Copyright © 2021 Fei et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Fei, Keke
Yan, Huan
Zeng, Xiaoyan
Huang, Shaojia
Tang, Wei
Francis, Matthew S.
Chen, Shiyun
Hu, Yangbo
LcrQ Coordinates with the YopD-LcrH Complex To Repress lcrF Expression and Control Type III Secretion by Yersinia pseudotuberculosis
title LcrQ Coordinates with the YopD-LcrH Complex To Repress lcrF Expression and Control Type III Secretion by Yersinia pseudotuberculosis
title_full LcrQ Coordinates with the YopD-LcrH Complex To Repress lcrF Expression and Control Type III Secretion by Yersinia pseudotuberculosis
title_fullStr LcrQ Coordinates with the YopD-LcrH Complex To Repress lcrF Expression and Control Type III Secretion by Yersinia pseudotuberculosis
title_full_unstemmed LcrQ Coordinates with the YopD-LcrH Complex To Repress lcrF Expression and Control Type III Secretion by Yersinia pseudotuberculosis
title_short LcrQ Coordinates with the YopD-LcrH Complex To Repress lcrF Expression and Control Type III Secretion by Yersinia pseudotuberculosis
title_sort lcrq coordinates with the yopd-lcrh complex to repress lcrf expression and control type iii secretion by yersinia pseudotuberculosis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8262909/
https://www.ncbi.nlm.nih.gov/pubmed/34154409
http://dx.doi.org/10.1128/mBio.01457-21
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