Toggle switch: noise determines the winning gene.

Abstract:

:Bistable regulatory elements enhance heterogeneity in cell populations and, in multicellular organisms, allow cells to specialize and specify their fate. Our study demonstrates that in a system of bistable genetic switch, the noise characteristics control in which of the two epigenetic attractors the cell population will settle. We focus on two types of noise: the gene switching noise and protein dimerization noise. We found that the change of magnitudes of these noise components for one of the two competing genes introduces a large asymmetry of the protein stationary probability distribution and changes the relative probability of individual gene activation. Interestingly, an increase of noise associated with a given gene can either promote or suppress the activation of the gene, depending on the type of noise. Namely, each gene is repressed by an increase of its gene switching noise and activated by an increase of its protein-product dimerization noise. The observed effect was found robust to the large, up to fivefold deviations of the model parameters. In summary, we demonstrated that noise itself may determine the relative strength of the epigenetic attractors, which may provide a unique mode of control of cell fate decisions.

journal_name

Phys Biol

journal_title

Physical biology

authors

Jaruszewicz J,Lipniacki T

doi

10.1088/1478-3975/10/3/035007

subject

Has Abstract

pub_date

2013-06-01 00:00:00

pages

035007

issue

3

eissn

1478-3967

issn

1478-3975

journal_volume

10

pub_type

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