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Expression of a novel gene, gluP, is essential for normal Bacillus subtilis cell division and contributes to glucose export

BACKGROUND: The Bacillus subtilis glucokinase operon was predicted to be comprised of the genes, yqgP (now named gluP), yqgQ, and glcK. We have previously established a role for glcK in glucose metabolism. In the absence of enzymes that phosphorylate glucose, such as GlcK and/or enzyme II(Glc), accu...

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Autores principales: Mesak, Lili R, Mesak, Felix M, Dahl, Michael K
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2004
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC408461/
https://www.ncbi.nlm.nih.gov/pubmed/15050034
http://dx.doi.org/10.1186/1471-2180-4-13
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author Mesak, Lili R
Mesak, Felix M
Dahl, Michael K
author_facet Mesak, Lili R
Mesak, Felix M
Dahl, Michael K
author_sort Mesak, Lili R
collection PubMed
description BACKGROUND: The Bacillus subtilis glucokinase operon was predicted to be comprised of the genes, yqgP (now named gluP), yqgQ, and glcK. We have previously established a role for glcK in glucose metabolism. In the absence of enzymes that phosphorylate glucose, such as GlcK and/or enzyme II(Glc), accumulated cytoplasmic glucose can be transported out of the cell. Genes within the glucokinase operon were not previously known to play a role in glucose transport. Here we describe the expression of gluP and its function in glucose transport. RESULTS: We found that transcription of the glucokinase operon was regulated, putatively, by two promoters: σ(A )and σ(H). Putative σ(A )and σ(H)-recognition sites were located upstream of and within gluP, respectively. Transcriptional glucokinase operon – lacZ fusions and Northern blotting were used to analyze the expression of gluP. GluP was predicted to be an integral membrane protein. Moreover, the prediction of GluP structure revealed interesting signatures: a rhomboid domain and two tetracopeptide repeat (TPR) motifs. Microscopic analysis showed that GluP minus cells were unable to divide completely, resulting in a filamentous phenotype. The cells were grown in either rich or minimal medium. We found GluP may be involved in glucose transport. [(14)C]-glucose uptake by the GluP minus strain was slightly less than in the wild type. On the other hand, trehalose-derived glucose in the growth medium of the GluP minus strain was detected in very low amounts. Experimental controls comprised of single or multiple genes mutations within the glucose transporting phosphotransferase system. CONCLUSIONS: gluP seems to be regulated only by a putative σ(A)-dependent promoter. The glucose uptake and export assays suggest that GluP is important for glucose export and may act as an exporter. This also supports the role of the glucokinase operon in glucose utilization.
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spelling pubmed-4084612004-05-16 Expression of a novel gene, gluP, is essential for normal Bacillus subtilis cell division and contributes to glucose export Mesak, Lili R Mesak, Felix M Dahl, Michael K BMC Microbiol Research Article BACKGROUND: The Bacillus subtilis glucokinase operon was predicted to be comprised of the genes, yqgP (now named gluP), yqgQ, and glcK. We have previously established a role for glcK in glucose metabolism. In the absence of enzymes that phosphorylate glucose, such as GlcK and/or enzyme II(Glc), accumulated cytoplasmic glucose can be transported out of the cell. Genes within the glucokinase operon were not previously known to play a role in glucose transport. Here we describe the expression of gluP and its function in glucose transport. RESULTS: We found that transcription of the glucokinase operon was regulated, putatively, by two promoters: σ(A )and σ(H). Putative σ(A )and σ(H)-recognition sites were located upstream of and within gluP, respectively. Transcriptional glucokinase operon – lacZ fusions and Northern blotting were used to analyze the expression of gluP. GluP was predicted to be an integral membrane protein. Moreover, the prediction of GluP structure revealed interesting signatures: a rhomboid domain and two tetracopeptide repeat (TPR) motifs. Microscopic analysis showed that GluP minus cells were unable to divide completely, resulting in a filamentous phenotype. The cells were grown in either rich or minimal medium. We found GluP may be involved in glucose transport. [(14)C]-glucose uptake by the GluP minus strain was slightly less than in the wild type. On the other hand, trehalose-derived glucose in the growth medium of the GluP minus strain was detected in very low amounts. Experimental controls comprised of single or multiple genes mutations within the glucose transporting phosphotransferase system. CONCLUSIONS: gluP seems to be regulated only by a putative σ(A)-dependent promoter. The glucose uptake and export assays suggest that GluP is important for glucose export and may act as an exporter. This also supports the role of the glucokinase operon in glucose utilization. BioMed Central 2004-03-30 /pmc/articles/PMC408461/ /pubmed/15050034 http://dx.doi.org/10.1186/1471-2180-4-13 Text en Copyright © 2004 Mesak et al; licensee BioMed Central Ltd. This is an Open Access article: verbatim copying and redistribution of this article are permitted in all media for any purpose, provided this notice is preserved along with the article's original URL.
spellingShingle Research Article
Mesak, Lili R
Mesak, Felix M
Dahl, Michael K
Expression of a novel gene, gluP, is essential for normal Bacillus subtilis cell division and contributes to glucose export
title Expression of a novel gene, gluP, is essential for normal Bacillus subtilis cell division and contributes to glucose export
title_full Expression of a novel gene, gluP, is essential for normal Bacillus subtilis cell division and contributes to glucose export
title_fullStr Expression of a novel gene, gluP, is essential for normal Bacillus subtilis cell division and contributes to glucose export
title_full_unstemmed Expression of a novel gene, gluP, is essential for normal Bacillus subtilis cell division and contributes to glucose export
title_short Expression of a novel gene, gluP, is essential for normal Bacillus subtilis cell division and contributes to glucose export
title_sort expression of a novel gene, glup, is essential for normal bacillus subtilis cell division and contributes to glucose export
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC408461/
https://www.ncbi.nlm.nih.gov/pubmed/15050034
http://dx.doi.org/10.1186/1471-2180-4-13
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