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Stochastic activation and bistability in a Rab GTPase regulatory network

Posted on 2020-01-29 - 19:17 authored by Urban Bezeljak
The eukaryotic endomembrane system is controlled by small GTPases of the Rab family, which are activated at defined times and locations in a switch-like manner. While this switch is well understood for an individual protein, how their regulatory networks produce intracellular activity patterns is currently not known. Here, we combine in vitro reconstitution experiments with computational modeling to study a minimal Rab5 activation network. We find that the molecular interactions in this system give rise to a positive feedback and bistable collective switching of Rab5. Furthermore, we find that switching near the critical point is intrinsically stochastic and provide evidence that controlling the inactive population of Rab5 on the membrane can shape the network response. Notably, we demonstrate that collective switching can spread on the membrane surface as a traveling wave of Rab5 activation. Together, our findings reveal how biochemical signaling networks control vesicle trafficking pathways and how their non-equilibrium properties define the spatiotemporal organization of the cell.

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FUNDING

HFSP RGY0083/2016

NSF PHY-1748958

NIH R25GM067110

Gordon and Betty Moore Foundation Grant No. 2919.01

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