Javascript must be enabled to continue!
A simple mechanism for integration of quorum sensing and cAMP signalling in Vibrio cholerae
View through CrossRef
Many bacteria use quorum sensing to control changes in lifestyle. The process is regulated by microbially derived ‘autoinducer’ signalling molecules, that accumulate in the local environment. Individual cells sense autoinducer abundance, to infer population density, and alter their behaviour accordingly. In
Vibrio cholerae
, quorum-sensing signals are transduced by phosphorelay to the transcription factor LuxO. Unphosphorylated LuxO permits expression of HapR, which alters global gene expression patterns. In this work, we have mapped the genome-wide distribution of LuxO and HapR in
V. cholerae
. Whilst LuxO has a small regulon, HapR targets 32 loci. Many HapR targets coincide with sites for the cAMP receptor protein (CRP) that regulates the transcriptional response to carbon starvation. This overlap, also evident in other
Vibrio
species, results from similarities in the DNA sequence bound by each factor. At shared sites, HapR and CRP simultaneously contact the double helix and binding is stabilised by direct interaction of the two factors. Importantly, this involves a CRP surface that usually contacts RNA polymerase to stimulate transcription. As a result, HapR can block transcription activation by CRP. Thus, by interacting at shared sites, HapR and CRP integrate information from quorum sensing and cAMP signalling to control gene expression. This likely allows
V. cholerae
to regulate subsets of genes during the transition between aquatic environments and the human host.
eLife Sciences Publications, Ltd
Title: A simple mechanism for integration of quorum sensing and cAMP signalling in Vibrio cholerae
Description:
Many bacteria use quorum sensing to control changes in lifestyle.
The process is regulated by microbially derived ‘autoinducer’ signalling molecules, that accumulate in the local environment.
Individual cells sense autoinducer abundance, to infer population density, and alter their behaviour accordingly.
In
Vibrio cholerae
, quorum-sensing signals are transduced by phosphorelay to the transcription factor LuxO.
Unphosphorylated LuxO permits expression of HapR, which alters global gene expression patterns.
In this work, we have mapped the genome-wide distribution of LuxO and HapR in
V.
cholerae
.
Whilst LuxO has a small regulon, HapR targets 32 loci.
Many HapR targets coincide with sites for the cAMP receptor protein (CRP) that regulates the transcriptional response to carbon starvation.
This overlap, also evident in other
Vibrio
species, results from similarities in the DNA sequence bound by each factor.
At shared sites, HapR and CRP simultaneously contact the double helix and binding is stabilised by direct interaction of the two factors.
Importantly, this involves a CRP surface that usually contacts RNA polymerase to stimulate transcription.
As a result, HapR can block transcription activation by CRP.
Thus, by interacting at shared sites, HapR and CRP integrate information from quorum sensing and cAMP signalling to control gene expression.
This likely allows
V.
cholerae
to regulate subsets of genes during the transition between aquatic environments and the human host.
Related Results
Colony morphology and molecular identification of Vibrio spp. on green mussels (Perna viridis) in Yogyakarta, Indonesia tourism beach areas
Colony morphology and molecular identification of Vibrio spp. on green mussels (Perna viridis) in Yogyakarta, Indonesia tourism beach areas
Abstract. Hikmawati F, Susilowati A, Setyaningsih R. 2019. Colony morphology and molecular identification of Vibrio spp. on green mussels (Perna viridis) in Yogyakarta, Indonesia t...
Bacterial LomR Induces the Vibriophage VP882 VqmA-Directed Quorum-Sensing Lysogeny-Lysis Transition
Bacterial LomR Induces the Vibriophage VP882 VqmA-Directed Quorum-Sensing Lysogeny-Lysis Transition
SUMMARY
The bacterial cell-cell communication process called quorum sensing enables groups of bacteria to synchronously alter behavior in respons...
Unveiling bacterial communication with a MATLAB GUI implementing the diffusion-based quorum sensing model
Unveiling bacterial communication with a MATLAB GUI implementing the diffusion-based quorum sensing model
AbstractBacteria employ quorum sensing as a remarkable mechanism for coordinating behaviors and communicating within their communities. In this study, we introduce a MATLAB Graphic...
A simple procedure for isolation, identification and characterization of Vibrio cholerae from clinical samples
A simple procedure for isolation, identification and characterization of Vibrio cholerae from clinical samples
Cholera is caused by Vibrio cholerae, which is a major health problem in several developing countries. Out of 147 diarrheal stool samples collected during one year period (2013) fr...
A simple mechanism for integration of quorum sensing and cAMP signalling in V. cholerae
A simple mechanism for integration of quorum sensing and cAMP signalling in V. cholerae
Abstract
Many bacteria use quorum sensing to control changes in lifestyle. The process is regulated by microbially derived “autoinducer” signalling molecules, that ...
Uji Antibakteri Rhizopus sp. Asal Inokulum Tempe terhadap Vibrio cholerae
Uji Antibakteri Rhizopus sp. Asal Inokulum Tempe terhadap Vibrio cholerae
Rhizopus sp. merupakan kapang yang digunakan dalam fermentasi tempe. Kapang Rhizopus pada tempe telah dikaji manfaatnya dalam mengurangi kejadian diare pada Escherichia coli dan Sa...
Cloning, purification, and enzymatic activity of the quorum sensing signal synthase RhlI
Cloning, purification, and enzymatic activity of the quorum sensing signal synthase RhlI
Quorum sensing is a bacterial cell‐cell communication system that functions through the synthesis, secretion, and detection of signaling molecules called autoinducers. Quorum sensi...
A simple mechanism for integration of quorum sensing and cAMP signalling in V. cholerae
A simple mechanism for integration of quorum sensing and cAMP signalling in V. cholerae
Abstract
Many bacteria use quorum sensing to control changes in lifestyle. The process is regulated by microbially derived “autoinducer” signalling molecules, that ...

