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A TetR-Family Protein (CAETHG_0459) Activates Transcription From a New Promoter Motif Associated With Essential Genes for Autotrophic Growth in Acetogens

Acetogens can fix carbon (CO or CO(2)) into acetyl-CoA via the Wood–Ljungdahl pathway (WLP) that also makes them attractive cell factories for the production of fuels and chemicals from waste feedstocks. Although most biochemical details of the WLP are well understood and systems-level characterizat...

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Autores principales: de Souza Pinto Lemgruber, Renato, Valgepea, Kaspar, Gonzalez Garcia, Ricardo Axayacatl, de Bakker, Christopher, Palfreyman, Robin William, Tappel, Ryan, Köpke, Michael, Simpson, Séan Dennis, Nielsen, Lars Keld, Marcellin, Esteban
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6873888/
https://www.ncbi.nlm.nih.gov/pubmed/31803150
http://dx.doi.org/10.3389/fmicb.2019.02549
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author de Souza Pinto Lemgruber, Renato
Valgepea, Kaspar
Gonzalez Garcia, Ricardo Axayacatl
de Bakker, Christopher
Palfreyman, Robin William
Tappel, Ryan
Köpke, Michael
Simpson, Séan Dennis
Nielsen, Lars Keld
Marcellin, Esteban
author_facet de Souza Pinto Lemgruber, Renato
Valgepea, Kaspar
Gonzalez Garcia, Ricardo Axayacatl
de Bakker, Christopher
Palfreyman, Robin William
Tappel, Ryan
Köpke, Michael
Simpson, Séan Dennis
Nielsen, Lars Keld
Marcellin, Esteban
author_sort de Souza Pinto Lemgruber, Renato
collection PubMed
description Acetogens can fix carbon (CO or CO(2)) into acetyl-CoA via the Wood–Ljungdahl pathway (WLP) that also makes them attractive cell factories for the production of fuels and chemicals from waste feedstocks. Although most biochemical details of the WLP are well understood and systems-level characterization of acetogen metabolism has recently improved, key transcriptional features such as promoter motifs and transcriptional regulators are still unknown in acetogens. Here, we use differential RNA-sequencing to identify a previously undescribed promoter motif associated with essential genes for autotrophic growth of the model-acetogen Clostridium autoethanogenum. RNA polymerase was shown to bind to the new promoter motif using a DNA-binding protein assay and proteomics enabled the discovery of four candidates to potentially function directly in control of transcription of the WLP and other key genes of C(1) fixation metabolism. Next, in vivo experiments showed that a TetR-family transcriptional regulator (CAETHG_0459) and the housekeeping sigma factor (σ(A)) activate expression of a reporter protein (GFP) in-frame with the new promoter motif from a fusion vector in Escherichia coli. Lastly, a protein–protein interaction assay with the RNA polymerase (RNAP) shows that CAETHG_0459 directly binds to the RNAP. Together, the data presented here advance the fundamental understanding of transcriptional regulation of C(1) fixation in acetogens and provide a strategy for improving the performance of gas-fermenting bacteria by genetic engineering.
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spelling pubmed-68738882019-12-04 A TetR-Family Protein (CAETHG_0459) Activates Transcription From a New Promoter Motif Associated With Essential Genes for Autotrophic Growth in Acetogens de Souza Pinto Lemgruber, Renato Valgepea, Kaspar Gonzalez Garcia, Ricardo Axayacatl de Bakker, Christopher Palfreyman, Robin William Tappel, Ryan Köpke, Michael Simpson, Séan Dennis Nielsen, Lars Keld Marcellin, Esteban Front Microbiol Microbiology Acetogens can fix carbon (CO or CO(2)) into acetyl-CoA via the Wood–Ljungdahl pathway (WLP) that also makes them attractive cell factories for the production of fuels and chemicals from waste feedstocks. Although most biochemical details of the WLP are well understood and systems-level characterization of acetogen metabolism has recently improved, key transcriptional features such as promoter motifs and transcriptional regulators are still unknown in acetogens. Here, we use differential RNA-sequencing to identify a previously undescribed promoter motif associated with essential genes for autotrophic growth of the model-acetogen Clostridium autoethanogenum. RNA polymerase was shown to bind to the new promoter motif using a DNA-binding protein assay and proteomics enabled the discovery of four candidates to potentially function directly in control of transcription of the WLP and other key genes of C(1) fixation metabolism. Next, in vivo experiments showed that a TetR-family transcriptional regulator (CAETHG_0459) and the housekeeping sigma factor (σ(A)) activate expression of a reporter protein (GFP) in-frame with the new promoter motif from a fusion vector in Escherichia coli. Lastly, a protein–protein interaction assay with the RNA polymerase (RNAP) shows that CAETHG_0459 directly binds to the RNAP. Together, the data presented here advance the fundamental understanding of transcriptional regulation of C(1) fixation in acetogens and provide a strategy for improving the performance of gas-fermenting bacteria by genetic engineering. Frontiers Media S.A. 2019-11-15 /pmc/articles/PMC6873888/ /pubmed/31803150 http://dx.doi.org/10.3389/fmicb.2019.02549 Text en Copyright © 2019 de Souza Pinto Lemgruber, Valgepea, Gonzalez Garcia, de Bakker, Palfreyman, Tappel, Köpke, Simpson, Nielsen and Marcellin. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
de Souza Pinto Lemgruber, Renato
Valgepea, Kaspar
Gonzalez Garcia, Ricardo Axayacatl
de Bakker, Christopher
Palfreyman, Robin William
Tappel, Ryan
Köpke, Michael
Simpson, Séan Dennis
Nielsen, Lars Keld
Marcellin, Esteban
A TetR-Family Protein (CAETHG_0459) Activates Transcription From a New Promoter Motif Associated With Essential Genes for Autotrophic Growth in Acetogens
title A TetR-Family Protein (CAETHG_0459) Activates Transcription From a New Promoter Motif Associated With Essential Genes for Autotrophic Growth in Acetogens
title_full A TetR-Family Protein (CAETHG_0459) Activates Transcription From a New Promoter Motif Associated With Essential Genes for Autotrophic Growth in Acetogens
title_fullStr A TetR-Family Protein (CAETHG_0459) Activates Transcription From a New Promoter Motif Associated With Essential Genes for Autotrophic Growth in Acetogens
title_full_unstemmed A TetR-Family Protein (CAETHG_0459) Activates Transcription From a New Promoter Motif Associated With Essential Genes for Autotrophic Growth in Acetogens
title_short A TetR-Family Protein (CAETHG_0459) Activates Transcription From a New Promoter Motif Associated With Essential Genes for Autotrophic Growth in Acetogens
title_sort tetr-family protein (caethg_0459) activates transcription from a new promoter motif associated with essential genes for autotrophic growth in acetogens
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6873888/
https://www.ncbi.nlm.nih.gov/pubmed/31803150
http://dx.doi.org/10.3389/fmicb.2019.02549
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