Within Gram-positive bacteria, the expression of target genes is controlled at the population level via signaling peptides, also known as pheromones. Pheromones control a wide range of functions, including competence, virulence, and others that remain unknown. Until now, their role in bacterial gene regulation has probably been underestimated; indeed, bacteria are able to produce, by ribosomal synthesis or surface protein degradation, an extraordinary variety of peptides which are released outside bacteria and among which, some are pheromones that mediate cell-to-cell communication. The review aims at giving an updated overview of these peptide-dependant communication pathways. More specifically, it follows the whole peptide circuit from th...
Gram-positive bacteria carry out intercellular communication using secreted peptides. Important exam...
Abstract There are two basic types of bacterial communication systems-those in which the signal is d...
Human microbiomes are composed of complex and dense bacterial consortia. In these environments, bact...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
While intercellular communication systems in Gram-negative bacteria are often based on homoserine la...
While intercellular communication systems in Gram-negative bacteria are often based on homoserine la...
While intercellular communication systems in Gram-negative bacteria are often based on homoserine la...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
Gram-positive bacteria carry out intercellular communication using secreted peptides. Important exam...
Gram-positive bacteria carry out intercellular communication using secreted peptides. Important exam...
Abstract There are two basic types of bacterial communication systems-those in which the signal is d...
Human microbiomes are composed of complex and dense bacterial consortia. In these environments, bact...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
While intercellular communication systems in Gram-negative bacteria are often based on homoserine la...
While intercellular communication systems in Gram-negative bacteria are often based on homoserine la...
While intercellular communication systems in Gram-negative bacteria are often based on homoserine la...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
Cell-density-dependent gene expression appears to be widely spread in bacteria. This quorum-sensing ...
Gram-positive bacteria carry out intercellular communication using secreted peptides. Important exam...
Gram-positive bacteria carry out intercellular communication using secreted peptides. Important exam...
Abstract There are two basic types of bacterial communication systems-those in which the signal is d...
Human microbiomes are composed of complex and dense bacterial consortia. In these environments, bact...