Difference between revisions of "Jörg Stülke"
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* [[Regulation of metabolism]] | * [[Regulation of metabolism]] | ||
* [[RNA-binding transcription factors]] | * [[RNA-binding transcription factors]] | ||
+ | * [[Essential genes and genome reduction]] | ||
* [[RNA degradation]] | * [[RNA degradation]] | ||
* [[Control of bistable gene expression]] | * [[Control of bistable gene expression]] | ||
* [[Second messengers]] | * [[Second messengers]] | ||
+ | * [[Metal ion homeostasis]] | ||
* [[Databases and bioinformatic tools]] | * [[Databases and bioinformatic tools]] | ||
* ''[[Mycoplasma]]'' | * ''[[Mycoplasma]]'' | ||
==The most recent publications on ''B. subtilis''== | ==The most recent publications on ''B. subtilis''== | ||
− | <pubmed> | + | <pubmed>35714772,35164567,35130724</pubmed> |
= Main research interests = | = Main research interests = |
Latest revision as of 16:44, 24 August 2022
Contents
Lab head: Jörg Stülke
Additional information
Publications
- Regulation of metabolism
- RNA-binding transcription factors
- Essential genes and genome reduction
- RNA degradation
- Control of bistable gene expression
- Second messengers
- Metal ion homeostasis
- Databases and bioinformatic tools
- Mycoplasma
The most recent publications on B. subtilis
Jana L Heidemann, Piotr Neumann, Larissa Krüger, Dennis Wicke, Liza Vinhoven, Andreas Linden, Achim Dickmanns, Jörg Stülke, Henning Urlaub, Ralf Ficner
Structural basis for c-di-AMP-dependent regulation of the bacterial stringent response by receptor protein DarB.
J Biol Chem: 2022, 298(7);102144
[PubMed:35714772]
[WorldCat.org]
[DOI]
(I p)
Brian M Wendel, Hualiang Pi, Larissa Krüger, Christina Herzberg, Jörg Stülke, John D Helmann
A Central Role for Magnesium Homeostasis during Adaptation to Osmotic Stress.
mBio: 2022, 13(1);e0009222
[PubMed:35164567]
[WorldCat.org]
[DOI]
(I p)
Larissa Krüger, Christina Herzberg, Dennis Wicke, Patricia Scholz, Kerstin Schmitt, Asan Turdiev, Vincent T Lee, Till Ischebeck, Jörg Stülke
Sustained Control of Pyruvate Carboxylase by the Essential Second Messenger Cyclic di-AMP in Bacillus subtilis.
mBio: 2021, 13(1);e0360221
[PubMed:35130724]
[WorldCat.org]
[DOI]
(I p)
Main research interests
- the minimal genome, central metabolism in B. subtilis, systems biology, RNA-protein interaction, protein-protein interactions, the RNA degradosome, biofilm formation, signal transduction by cyclic di-AMP