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A protease and a lipoprotein jointly modulate the conserved ExoR-ExoS-ChvI signaling pathway critical in Sinorhizobium meliloti for symbiosis with legume hosts

Sinorhizobium meliloti is a model alpha-proteobacterium for investigating microbe-host interactions, in particular nitrogen-fixing rhizobium-legume symbioses. Successful infection requires complex coordination between compatible host and endosymbiont, including bacterial production of succinoglycan,...

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Autores principales: Bustamante, Julian A., Ceron, Josue S., Gao, Ivan Thomas, Ramirez, Hector A., Aviles, Milo V., Bet Adam, Demsin, Brice, Jason R., Cuellar, Rodrigo A., Dockery, Eva, Jabagat, Miguel Karlo, Karp, Donna Grace, Lau, Joseph Kin-On, Li, Suling, Lopez-Magaña, Raymondo, Moore, Rebecca R., Morin, Bethany Kristi R., Nzongo, Juliana, Rezaeihaghighi, Yasha, Sapienza-Martinez, Joseph, Tran, Tuyet Thi Kim, Huang, Zhenzhong, Duthoy, Aaron J., Barnett, Melanie J., Long, Sharon R., Chen, Joseph C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10659215/
https://www.ncbi.nlm.nih.gov/pubmed/37871041
http://dx.doi.org/10.1371/journal.pgen.1010776
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author Bustamante, Julian A.
Ceron, Josue S.
Gao, Ivan Thomas
Ramirez, Hector A.
Aviles, Milo V.
Bet Adam, Demsin
Brice, Jason R.
Cuellar, Rodrigo A.
Dockery, Eva
Jabagat, Miguel Karlo
Karp, Donna Grace
Lau, Joseph Kin-On
Li, Suling
Lopez-Magaña, Raymondo
Moore, Rebecca R.
Morin, Bethany Kristi R.
Nzongo, Juliana
Rezaeihaghighi, Yasha
Sapienza-Martinez, Joseph
Tran, Tuyet Thi Kim
Huang, Zhenzhong
Duthoy, Aaron J.
Barnett, Melanie J.
Long, Sharon R.
Chen, Joseph C.
author_facet Bustamante, Julian A.
Ceron, Josue S.
Gao, Ivan Thomas
Ramirez, Hector A.
Aviles, Milo V.
Bet Adam, Demsin
Brice, Jason R.
Cuellar, Rodrigo A.
Dockery, Eva
Jabagat, Miguel Karlo
Karp, Donna Grace
Lau, Joseph Kin-On
Li, Suling
Lopez-Magaña, Raymondo
Moore, Rebecca R.
Morin, Bethany Kristi R.
Nzongo, Juliana
Rezaeihaghighi, Yasha
Sapienza-Martinez, Joseph
Tran, Tuyet Thi Kim
Huang, Zhenzhong
Duthoy, Aaron J.
Barnett, Melanie J.
Long, Sharon R.
Chen, Joseph C.
author_sort Bustamante, Julian A.
collection PubMed
description Sinorhizobium meliloti is a model alpha-proteobacterium for investigating microbe-host interactions, in particular nitrogen-fixing rhizobium-legume symbioses. Successful infection requires complex coordination between compatible host and endosymbiont, including bacterial production of succinoglycan, also known as exopolysaccharide-I (EPS-I). In S. meliloti EPS-I production is controlled by the conserved ExoS-ChvI two-component system. Periplasmic ExoR associates with the ExoS histidine kinase and negatively regulates ChvI-dependent expression of exo genes, necessary for EPS-I synthesis. We show that two extracytoplasmic proteins, LppA (a lipoprotein) and JspA (a lipoprotein and a metalloprotease), jointly influence EPS-I synthesis by modulating the ExoR-ExoS-ChvI pathway and expression of genes in the ChvI regulon. Deletions of jspA and lppA led to lower EPS-I production and competitive disadvantage during host colonization, for both S. meliloti with Medicago sativa and S. medicae with M. truncatula. Overexpression of jspA reduced steady-state levels of ExoR, suggesting that the JspA protease participates in ExoR degradation. This reduction in ExoR levels is dependent on LppA and can be replicated with ExoR, JspA, and LppA expressed exogenously in Caulobacter crescentus and Escherichia coli. Akin to signaling pathways that sense extracytoplasmic stress in other bacteria, JspA and LppA may monitor periplasmic conditions during interaction with the plant host to adjust accordingly expression of genes that contribute to efficient symbiosis. The molecular mechanisms underlying host colonization in our model system may have parallels in related alpha-proteobacteria.
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spelling pubmed-106592152023-10-23 A protease and a lipoprotein jointly modulate the conserved ExoR-ExoS-ChvI signaling pathway critical in Sinorhizobium meliloti for symbiosis with legume hosts Bustamante, Julian A. Ceron, Josue S. Gao, Ivan Thomas Ramirez, Hector A. Aviles, Milo V. Bet Adam, Demsin Brice, Jason R. Cuellar, Rodrigo A. Dockery, Eva Jabagat, Miguel Karlo Karp, Donna Grace Lau, Joseph Kin-On Li, Suling Lopez-Magaña, Raymondo Moore, Rebecca R. Morin, Bethany Kristi R. Nzongo, Juliana Rezaeihaghighi, Yasha Sapienza-Martinez, Joseph Tran, Tuyet Thi Kim Huang, Zhenzhong Duthoy, Aaron J. Barnett, Melanie J. Long, Sharon R. Chen, Joseph C. PLoS Genet Research Article Sinorhizobium meliloti is a model alpha-proteobacterium for investigating microbe-host interactions, in particular nitrogen-fixing rhizobium-legume symbioses. Successful infection requires complex coordination between compatible host and endosymbiont, including bacterial production of succinoglycan, also known as exopolysaccharide-I (EPS-I). In S. meliloti EPS-I production is controlled by the conserved ExoS-ChvI two-component system. Periplasmic ExoR associates with the ExoS histidine kinase and negatively regulates ChvI-dependent expression of exo genes, necessary for EPS-I synthesis. We show that two extracytoplasmic proteins, LppA (a lipoprotein) and JspA (a lipoprotein and a metalloprotease), jointly influence EPS-I synthesis by modulating the ExoR-ExoS-ChvI pathway and expression of genes in the ChvI regulon. Deletions of jspA and lppA led to lower EPS-I production and competitive disadvantage during host colonization, for both S. meliloti with Medicago sativa and S. medicae with M. truncatula. Overexpression of jspA reduced steady-state levels of ExoR, suggesting that the JspA protease participates in ExoR degradation. This reduction in ExoR levels is dependent on LppA and can be replicated with ExoR, JspA, and LppA expressed exogenously in Caulobacter crescentus and Escherichia coli. Akin to signaling pathways that sense extracytoplasmic stress in other bacteria, JspA and LppA may monitor periplasmic conditions during interaction with the plant host to adjust accordingly expression of genes that contribute to efficient symbiosis. The molecular mechanisms underlying host colonization in our model system may have parallels in related alpha-proteobacteria. Public Library of Science 2023-10-23 /pmc/articles/PMC10659215/ /pubmed/37871041 http://dx.doi.org/10.1371/journal.pgen.1010776 Text en © 2023 Bustamante et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Bustamante, Julian A.
Ceron, Josue S.
Gao, Ivan Thomas
Ramirez, Hector A.
Aviles, Milo V.
Bet Adam, Demsin
Brice, Jason R.
Cuellar, Rodrigo A.
Dockery, Eva
Jabagat, Miguel Karlo
Karp, Donna Grace
Lau, Joseph Kin-On
Li, Suling
Lopez-Magaña, Raymondo
Moore, Rebecca R.
Morin, Bethany Kristi R.
Nzongo, Juliana
Rezaeihaghighi, Yasha
Sapienza-Martinez, Joseph
Tran, Tuyet Thi Kim
Huang, Zhenzhong
Duthoy, Aaron J.
Barnett, Melanie J.
Long, Sharon R.
Chen, Joseph C.
A protease and a lipoprotein jointly modulate the conserved ExoR-ExoS-ChvI signaling pathway critical in Sinorhizobium meliloti for symbiosis with legume hosts
title A protease and a lipoprotein jointly modulate the conserved ExoR-ExoS-ChvI signaling pathway critical in Sinorhizobium meliloti for symbiosis with legume hosts
title_full A protease and a lipoprotein jointly modulate the conserved ExoR-ExoS-ChvI signaling pathway critical in Sinorhizobium meliloti for symbiosis with legume hosts
title_fullStr A protease and a lipoprotein jointly modulate the conserved ExoR-ExoS-ChvI signaling pathway critical in Sinorhizobium meliloti for symbiosis with legume hosts
title_full_unstemmed A protease and a lipoprotein jointly modulate the conserved ExoR-ExoS-ChvI signaling pathway critical in Sinorhizobium meliloti for symbiosis with legume hosts
title_short A protease and a lipoprotein jointly modulate the conserved ExoR-ExoS-ChvI signaling pathway critical in Sinorhizobium meliloti for symbiosis with legume hosts
title_sort protease and a lipoprotein jointly modulate the conserved exor-exos-chvi signaling pathway critical in sinorhizobium meliloti for symbiosis with legume hosts
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10659215/
https://www.ncbi.nlm.nih.gov/pubmed/37871041
http://dx.doi.org/10.1371/journal.pgen.1010776
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