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The SpoIIQ‐SpoIIIAH complex of C lostridium difficile controls forespore engulfment and late stages of gene expression and spore morphogenesis

Engulfment of the forespore by the mother cell is a universal feature of endosporulation. In Bacillus subtilis, the forespore protein SpoIIQ and the mother cell protein SpoIIIAH form a channel, essential for endosporulation, through which the developing spore is nurtured. The two proteins also form...

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Autores principales: Serrano, Mónica, Crawshaw, Adam D., Dembek, Marcin, Monteiro, João M., Pereira, Fátima C., Pinho, Mariana Gomes, Fairweather, Neil F., Salgado, Paula S., Henriques, Adriano O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4982068/
https://www.ncbi.nlm.nih.gov/pubmed/26690930
http://dx.doi.org/10.1111/mmi.13311
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author Serrano, Mónica
Crawshaw, Adam D.
Dembek, Marcin
Monteiro, João M.
Pereira, Fátima C.
Pinho, Mariana Gomes
Fairweather, Neil F.
Salgado, Paula S.
Henriques, Adriano O.
author_facet Serrano, Mónica
Crawshaw, Adam D.
Dembek, Marcin
Monteiro, João M.
Pereira, Fátima C.
Pinho, Mariana Gomes
Fairweather, Neil F.
Salgado, Paula S.
Henriques, Adriano O.
author_sort Serrano, Mónica
collection PubMed
description Engulfment of the forespore by the mother cell is a universal feature of endosporulation. In Bacillus subtilis, the forespore protein SpoIIQ and the mother cell protein SpoIIIAH form a channel, essential for endosporulation, through which the developing spore is nurtured. The two proteins also form a backup system for engulfment. Unlike in B. subtilis, SpoIIQ of Clostridium difficile has intact LytM zinc‐binding motifs. We show that spoIIQ or spoIIIAH deletion mutants of C. difficile result in anomalous engulfment, and that disruption of the SpoIIQ LytM domain via a single amino acid substitution (H120S) impairs engulfment differently. SpoIIQ and SpoIIQ(H120S) interact with SpoIIIAH throughout engulfment. SpoIIQ, but not SpoIIQ(H120S), binds Zn(2+), and metal absence alters the SpoIIQ‐SpoIIIAH complex in vitro. Possibly, SpoIIQ(H120S) supports normal engulfment in some cells but not a second function of the complex, required following engulfment completion. We show that cells of the spoIIQ or spoIIIAH mutants that complete engulfment are impaired in post‐engulfment, forespore and mother cell‐specific gene expression, suggesting a channel‐like function. Both engulfment and a channel‐like function may be ancestral functions of SpoIIQ‐SpoIIIAH while the requirement for engulfment was alleviated through the emergence of redundant mechanisms in B. subtilis and related organisms.
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spelling pubmed-49820682016-08-26 The SpoIIQ‐SpoIIIAH complex of C lostridium difficile controls forespore engulfment and late stages of gene expression and spore morphogenesis Serrano, Mónica Crawshaw, Adam D. Dembek, Marcin Monteiro, João M. Pereira, Fátima C. Pinho, Mariana Gomes Fairweather, Neil F. Salgado, Paula S. Henriques, Adriano O. Mol Microbiol Research Articles Engulfment of the forespore by the mother cell is a universal feature of endosporulation. In Bacillus subtilis, the forespore protein SpoIIQ and the mother cell protein SpoIIIAH form a channel, essential for endosporulation, through which the developing spore is nurtured. The two proteins also form a backup system for engulfment. Unlike in B. subtilis, SpoIIQ of Clostridium difficile has intact LytM zinc‐binding motifs. We show that spoIIQ or spoIIIAH deletion mutants of C. difficile result in anomalous engulfment, and that disruption of the SpoIIQ LytM domain via a single amino acid substitution (H120S) impairs engulfment differently. SpoIIQ and SpoIIQ(H120S) interact with SpoIIIAH throughout engulfment. SpoIIQ, but not SpoIIQ(H120S), binds Zn(2+), and metal absence alters the SpoIIQ‐SpoIIIAH complex in vitro. Possibly, SpoIIQ(H120S) supports normal engulfment in some cells but not a second function of the complex, required following engulfment completion. We show that cells of the spoIIQ or spoIIIAH mutants that complete engulfment are impaired in post‐engulfment, forespore and mother cell‐specific gene expression, suggesting a channel‐like function. Both engulfment and a channel‐like function may be ancestral functions of SpoIIQ‐SpoIIIAH while the requirement for engulfment was alleviated through the emergence of redundant mechanisms in B. subtilis and related organisms. John Wiley and Sons Inc. 2016-02-12 2016-04 /pmc/articles/PMC4982068/ /pubmed/26690930 http://dx.doi.org/10.1111/mmi.13311 Text en © 2015 The Authors. Molecular Microbiology published by John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Serrano, Mónica
Crawshaw, Adam D.
Dembek, Marcin
Monteiro, João M.
Pereira, Fátima C.
Pinho, Mariana Gomes
Fairweather, Neil F.
Salgado, Paula S.
Henriques, Adriano O.
The SpoIIQ‐SpoIIIAH complex of C lostridium difficile controls forespore engulfment and late stages of gene expression and spore morphogenesis
title The SpoIIQ‐SpoIIIAH complex of C lostridium difficile controls forespore engulfment and late stages of gene expression and spore morphogenesis
title_full The SpoIIQ‐SpoIIIAH complex of C lostridium difficile controls forespore engulfment and late stages of gene expression and spore morphogenesis
title_fullStr The SpoIIQ‐SpoIIIAH complex of C lostridium difficile controls forespore engulfment and late stages of gene expression and spore morphogenesis
title_full_unstemmed The SpoIIQ‐SpoIIIAH complex of C lostridium difficile controls forespore engulfment and late stages of gene expression and spore morphogenesis
title_short The SpoIIQ‐SpoIIIAH complex of C lostridium difficile controls forespore engulfment and late stages of gene expression and spore morphogenesis
title_sort spoiiq‐spoiiiah complex of c lostridium difficile controls forespore engulfment and late stages of gene expression and spore morphogenesis
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4982068/
https://www.ncbi.nlm.nih.gov/pubmed/26690930
http://dx.doi.org/10.1111/mmi.13311
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