Genome-wide analysis of the role of GlnR in <it>Streptomyces venezuelae </it>provides new insights into global nitrogen regulation in actinomycetes
<p>Abstract</p> <p>Background</p> <p>GlnR is an atypical response regulator found in actinomycetes that modulates the transcription of genes in response to changes in nitrogen availability. We applied a global <it>in vivo </it>approach to identify the GlnR r...
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doaj-4bd05583171d408bb708c2e02f06cbe32020-11-25T00:23:56ZengBMCBMC Genomics1471-21642011-04-0112117510.1186/1471-2164-12-175Genome-wide analysis of the role of GlnR in <it>Streptomyces venezuelae </it>provides new insights into global nitrogen regulation in actinomycetesBibb Mervyn JChandra GovindPullan Steven TMerrick Mike<p>Abstract</p> <p>Background</p> <p>GlnR is an atypical response regulator found in actinomycetes that modulates the transcription of genes in response to changes in nitrogen availability. We applied a global <it>in vivo </it>approach to identify the GlnR regulon of <it>Streptomyces venezuelae</it>, which, unlike many actinomycetes, grows in a diffuse manner that is suitable for physiological studies. Conditions were defined that facilitated analysis of GlnR-dependent induction of gene expression in response to rapid nitrogen starvation. Microarray analysis identified global transcriptional differences between <it>glnR</it><sup>+ </sup>and <it>glnR </it>mutant strains under varying nitrogen conditions. To differentiate between direct and indirect regulatory effects of GlnR, chromatin immuno-precipitation (ChIP) using antibodies specific to a FLAG-tagged GlnR protein, coupled with microarray analysis (ChIP-chip), was used to identify GlnR binding sites throughout the <it>S. venezuelae </it>genome.</p> <p>Results</p> <p>GlnR bound to its target sites in both transcriptionally active and apparently inactive forms. Thirty-six GlnR binding sites were identified by ChIP-chip analysis allowing derivation of a consensus GlnR-binding site for <it>S. venezuelae</it>. GlnR-binding regions were associated with genes involved in primary nitrogen metabolism, secondary metabolism, the synthesis of catabolic enzymes and a number of transport-related functions.</p> <p>Conclusions</p> <p>The GlnR regulon of <it>S. venezuelae </it>is extensive and impacts on many facets of the organism's biology. GlnR can apparently bind to its target sites in both transcriptionally active and inactive forms.</p> http://www.biomedcentral.com/1471-2164/12/175 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Bibb Mervyn J Chandra Govind Pullan Steven T Merrick Mike |
spellingShingle |
Bibb Mervyn J Chandra Govind Pullan Steven T Merrick Mike Genome-wide analysis of the role of GlnR in <it>Streptomyces venezuelae </it>provides new insights into global nitrogen regulation in actinomycetes BMC Genomics |
author_facet |
Bibb Mervyn J Chandra Govind Pullan Steven T Merrick Mike |
author_sort |
Bibb Mervyn J |
title |
Genome-wide analysis of the role of GlnR in <it>Streptomyces venezuelae </it>provides new insights into global nitrogen regulation in actinomycetes |
title_short |
Genome-wide analysis of the role of GlnR in <it>Streptomyces venezuelae </it>provides new insights into global nitrogen regulation in actinomycetes |
title_full |
Genome-wide analysis of the role of GlnR in <it>Streptomyces venezuelae </it>provides new insights into global nitrogen regulation in actinomycetes |
title_fullStr |
Genome-wide analysis of the role of GlnR in <it>Streptomyces venezuelae </it>provides new insights into global nitrogen regulation in actinomycetes |
title_full_unstemmed |
Genome-wide analysis of the role of GlnR in <it>Streptomyces venezuelae </it>provides new insights into global nitrogen regulation in actinomycetes |
title_sort |
genome-wide analysis of the role of glnr in <it>streptomyces venezuelae </it>provides new insights into global nitrogen regulation in actinomycetes |
publisher |
BMC |
series |
BMC Genomics |
issn |
1471-2164 |
publishDate |
2011-04-01 |
description |
<p>Abstract</p> <p>Background</p> <p>GlnR is an atypical response regulator found in actinomycetes that modulates the transcription of genes in response to changes in nitrogen availability. We applied a global <it>in vivo </it>approach to identify the GlnR regulon of <it>Streptomyces venezuelae</it>, which, unlike many actinomycetes, grows in a diffuse manner that is suitable for physiological studies. Conditions were defined that facilitated analysis of GlnR-dependent induction of gene expression in response to rapid nitrogen starvation. Microarray analysis identified global transcriptional differences between <it>glnR</it><sup>+ </sup>and <it>glnR </it>mutant strains under varying nitrogen conditions. To differentiate between direct and indirect regulatory effects of GlnR, chromatin immuno-precipitation (ChIP) using antibodies specific to a FLAG-tagged GlnR protein, coupled with microarray analysis (ChIP-chip), was used to identify GlnR binding sites throughout the <it>S. venezuelae </it>genome.</p> <p>Results</p> <p>GlnR bound to its target sites in both transcriptionally active and apparently inactive forms. Thirty-six GlnR binding sites were identified by ChIP-chip analysis allowing derivation of a consensus GlnR-binding site for <it>S. venezuelae</it>. GlnR-binding regions were associated with genes involved in primary nitrogen metabolism, secondary metabolism, the synthesis of catabolic enzymes and a number of transport-related functions.</p> <p>Conclusions</p> <p>The GlnR regulon of <it>S. venezuelae </it>is extensive and impacts on many facets of the organism's biology. GlnR can apparently bind to its target sites in both transcriptionally active and inactive forms.</p> |
url |
http://www.biomedcentral.com/1471-2164/12/175 |
work_keys_str_mv |
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