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Phys Biol ; 10(4): 046007, 2013 Aug.
Article in English | MEDLINE | ID: mdl-23820088

ABSTRACT

Quorum sensing is the process by which bacteria regulate their gene expression based on the local cell-population density. The quorum sensing systems of Vibrio harveyi and Vibrio cholerae are comprised of a phosphorelay cascade coupled to a small RNA (sRNA) circuit. The sRNA circuit contains multiple quorum regulated small RNA (Qrr) that regulate expression of the homologous master transcriptional regulators LuxR (in V. harveyi) and HapR (in V. cholerae). Their quorum sensing systems are topologically similar and homologous thereby making it difficult to understand why repression of HapR is more robust than LuxR to changes in Qrr. In this work we formulate and parameterize a novel mathematical model of the V. harveyi and V. cholerae sRNA circuit. We parameterize the model by fitting it to a variety of empirical data from both species. We show that we can distinguish all of the parameters and that the parameterizations (one for each species) are robust to errors in the data. We then use our model to propose some experiments to identify and explain kinetic differences between the species. We find that V. cholerae Qrr are more abundant and more sensitive to changes in LuxO than V. harveyi Qrr and argue that this is why expression of HapR is more robust than LuxR to changes in Qrr.


Subject(s)
Gene Expression Regulation, Bacterial , Models, Biological , Quorum Sensing/genetics , RNA, Bacterial/genetics , Vibrio cholerae/genetics , Bacterial Proteins/chemistry , Bacterial Proteins/genetics , Computational Biology , RNA, Bacterial/chemistry , Repressor Proteins/chemistry , Repressor Proteins/genetics , Trans-Activators/chemistry , Trans-Activators/genetics
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