bioRxiv · 10.1101/825786
Robustness of bidirectional microtubule network self-organization
Abstract
Robustness of biological systems is crucial for their survival, however, for many systems its origin is an open question. Here we analyze one sub-cellular level system, the microtubule cytoskeleton. Microtubules self-organize into a network, along which cellular components are delivered to their biologically relevant locations. While individual microtubule are highly dynamic with their dynamics depends on the organism environment and genetics, network sensitivity to this dynamics would result in pathologies. Combining mathematical modelling with genetic manipulations in Drosophila, we show that the microtubule self-organization indeed does not depend on dynamics of individual microtubules, and thus is robust on the tissue level. We demonstrate the origin of this robustness via a mathematical model, suggesting this being a generic mechanism.
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Plochocka, A. Z., Davie, A. M., Bulgakova, N. A., Chumakova, L.. 2019-10-31. Robustness of bidirectional microtubule network self-organization. https://doi.org/10.1101/825786
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