Difference between revisions of "Jörg Stülke"
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= Publications = | = Publications = | ||
[http://www.ncbi.nlm.nih.gov/sites/entrez?cmd=search&db=pubmed&term=%22Stulke%2BJ%22%5Bau%5D&dispmax=50 Pubmed] | [http://www.ncbi.nlm.nih.gov/sites/entrez?cmd=search&db=pubmed&term=%22Stulke%2BJ%22%5Bau%5D&dispmax=50 Pubmed] | ||
+ | * [[Regulation of metabolism]] | ||
+ | * [[RNA-binding transcription factors]] | ||
+ | * [[RNA degradation]] | ||
+ | * [[Control of bistable gene expression]] | ||
+ | * ''[[Mycoplasma]]'' | ||
==The most recent publications on ''B. subtilis''== | ==The most recent publications on ''B. subtilis''== |
Revision as of 10:17, 24 November 2012
Contents
Lab head: Jörg Stülke
Additional information
Publications
- Regulation of metabolism
- RNA-binding transcription factors
- RNA degradation
- Control of bistable gene expression
- Mycoplasma
The most recent publications on B. subtilis
Martin Lehnik-Habrink, Leonie Rempeters, Ákos T Kovács, Christoph Wrede, Claudia Baierlein, Heike Krebber, Oscar P Kuipers, Jörg Stülke
DEAD-Box RNA helicases in Bacillus subtilis have multiple functions and act independently from each other.
J Bacteriol: 2013, 195(3);534-44
[PubMed:23175651]
[WorldCat.org]
[DOI]
(I p)
Frederik M Meyer, Jörg Stülke
Malate metabolism in Bacillus subtilis: distinct roles for three classes of malate-oxidizing enzymes.
FEMS Microbiol Lett: 2013, 339(1);17-22
[PubMed:23136871]
[WorldCat.org]
[DOI]
(I p)
Sebastian Himmel, Christopher P Zschiedrich, Stefan Becker, He-Hsuan Hsiao, Sebastian Wolff, Christine Diethmaier, Henning Urlaub, Donghan Lee, Christian Griesinger, Jörg Stülke
Determinants of interaction specificity of the Bacillus subtilis GlcT antitermination protein: functionality and phosphorylation specificity depend on the arrangement of the regulatory domains.
J Biol Chem: 2012, 287(33);27731-42
[PubMed:22722928]
[WorldCat.org]
[DOI]
(I p)
Main research interests
central metabolism in B. subtilis, systems biology, RNA-protein interaction, protein-protein interactions, the RNA degradosome, biofilm formation