In order to adjust to changing environmental conditions, bacteria use nucleotide second messengers to transduce external signals and translate them into a specific cellular response. Cyclic di-adenosine monophosphate (c-di-AMP) is the only known essential nucleotide second messenger. In addition to the well-established role of this second messenger in the control of potassium homeostasis, we observed that glutamate is as toxic as potassium for a c-di-AMP-free strain of the Gram-positive model bacterium Bacillus subtilis. In this work, we isolated suppressor mutants that allow growth of a c-di-AMP-free strain under these toxic conditions. Characterization of glutamate resistant suppressors revealed that they contain pairs of mutations, in mo...
Nucleotide second messengers allow cells to transduce external signals into cellular responses by mo...
Soil bacteria like Bacillus subtilis can cope with many growth conditions by adjusting gene expressi...
Soil bacteria like Bacillus subtilis can cope with many growth conditions by adjusting gene expressi...
Signal transduction describes the ability of cells to sense environmental stimuli and transfer this ...
The broadly conserved bacterial signalling molecule cyclic-di-adenosine monophosphate (c-di-AMP) con...
ABSTRACT Potassium is the most abundant metal ion in every living cell. This ion is essential due to...
The broadly conserved bacterial signalling molecule cyclic-di-adenosine monophosphate (c-di-AMP) con...
International audienceCyclic nucleotides are universally used as secondary messengers to control cel...
The broadly conserved cyclic di-AMP (c-di-AMP) is a conditionally essential bacterial second messeng...
Cyclic di-adenosine monophosphate (c-di-AMP) is a bacterial second messenger discovered in Bacillus ...
A previous proteomic study uncovered a relationship between nutritional stress and fluctuations in l...
Dissertação de mestrado em Bioquímica Aplicada (área de especialização em Biomedicina)Potassium is t...
Glutamate is a central metabolite in any living organism because it is the major amino group donor f...
Cyclic di-AMP is the only known essential second messenger in bacteria and archaea, regulating diffe...
Cyclic di-AMP is the only known essential second messenger in bacteria and archaea, regulating diffe...
Nucleotide second messengers allow cells to transduce external signals into cellular responses by mo...
Soil bacteria like Bacillus subtilis can cope with many growth conditions by adjusting gene expressi...
Soil bacteria like Bacillus subtilis can cope with many growth conditions by adjusting gene expressi...
Signal transduction describes the ability of cells to sense environmental stimuli and transfer this ...
The broadly conserved bacterial signalling molecule cyclic-di-adenosine monophosphate (c-di-AMP) con...
ABSTRACT Potassium is the most abundant metal ion in every living cell. This ion is essential due to...
The broadly conserved bacterial signalling molecule cyclic-di-adenosine monophosphate (c-di-AMP) con...
International audienceCyclic nucleotides are universally used as secondary messengers to control cel...
The broadly conserved cyclic di-AMP (c-di-AMP) is a conditionally essential bacterial second messeng...
Cyclic di-adenosine monophosphate (c-di-AMP) is a bacterial second messenger discovered in Bacillus ...
A previous proteomic study uncovered a relationship between nutritional stress and fluctuations in l...
Dissertação de mestrado em Bioquímica Aplicada (área de especialização em Biomedicina)Potassium is t...
Glutamate is a central metabolite in any living organism because it is the major amino group donor f...
Cyclic di-AMP is the only known essential second messenger in bacteria and archaea, regulating diffe...
Cyclic di-AMP is the only known essential second messenger in bacteria and archaea, regulating diffe...
Nucleotide second messengers allow cells to transduce external signals into cellular responses by mo...
Soil bacteria like Bacillus subtilis can cope with many growth conditions by adjusting gene expressi...
Soil bacteria like Bacillus subtilis can cope with many growth conditions by adjusting gene expressi...