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RNA-based regulation: dynamics and response to perturbations of competing RNAs

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arxiv 1312.5537 v1 pith:XIWGOU64 submitted 2013-12-19 q-bio.MN cond-mat.dis-nncond-mat.stat-mechq-bio.GNq-bio.QM

RNA-based regulation: dynamics and response to perturbations of competing RNAs

classification q-bio.MN cond-mat.dis-nncond-mat.stat-mechq-bio.GNq-bio.QM
keywords cernacross-talkachievernasscalestimecellcompeting
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The observation that, through a titration mechanism, microRNAs (miRNAs) can act as mediators of effective interactions among their common targets (competing endogenous RNAs or ceRNAs) has brought forward the idea ('ceRNA hypothesis') that RNAs can regulate each other in extended 'cross-talk' networks. Such an ability might play a major role in post-transcriptional regulation (PTR) in shaping a cell's protein repertoire. Recent work focusing on the emergent properties of the cross-talk networks has emphasized the high flexibility and selectivity that may be achieved at stationarity. On the other hand, dynamical aspects, possibly crucial on the relevant time scales, are far less clear. We have carried out a dynamical study of the ceRNA hypothesis on a model of PTR. Sensitivity analysis shows that ceRNA cross-talk is dynamically extended, i.e. it may take place on time scales shorter than those required to achieve stationairity even in cases where no cross-talk occurs in the steady state, and is possibly amplified. Besides, in case of large, transfection-like perturbations the system may develop strongly non-linear, threshold response. Finally, we show that the ceRNA effect provides a very efficient way for a cell to achieve fast positive shifts in the level of a ceRNA when necessary. These results indicate that competition for miRNAs may indeed provide an elementary mechanism to achieve system-level regulatory effects on the transcriptome over physiologically relevant time scales.

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