A power-law dependence of bacterial invasion on mammalian host receptors

5Citations
Citations of this article
24Readers
Mendeley users who have this article in their library.

Abstract

Pathogenic bacteria such as Listeria and Yersinia gain initial entry by binding to host target cells and stimulating their internalization. Bacterial uptake entails successive, increasingly strong associations between receptors on the surface of bacteria and hosts. Even with genetically identical cells grown in the same environment, there are vast differences in the number of bacteria entering any given cell. To gain insight into this variability, we examined uptake dynamics of Escherichia coli engineered to express the invasin surface receptor from Yersinia, which enables uptake via mammalian host β1-integrins. Surprisingly, we found that the uptake probability of a single bacterium follows a simple power-law dependence on the concentration of integrins. Furthermore, the value of a power-law parameter depends on the particular host-bacterium pair but not on bacterial concentration. This power-law captures the complex, variable processes underlying bacterial invasion while also enabling differentiation of cell lines.

Cite

CITATION STYLE

APA

Lee, T. J., Wong, J., Bae, S., Lee, A. J., Lopatkin, A., Yuan, F., & You, L. (2015). A power-law dependence of bacterial invasion on mammalian host receptors. PLoS Computational Biology, 11(4). https://doi.org/10.1371/journal.pcbi.1004203

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free