Self-organization of an acentrosomal microtubule network at the basal cortex of polarized epithelial cells
Open Access
- 28 November 2005
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 171 (5) , 845-855
- https://doi.org/10.1083/jcb.200505071
Abstract
Mechanisms underlying the organization of centrosome-derived microtubule arrays are well understood, but less is known about how acentrosomal microtubule networks are formed. The basal cortex of polarized epithelial cells contains a microtubule network of mixed polarity. We examined how this network is organized by imaging microtubule dynamics in acentrosomal basal cytoplasts derived from these cells. We show that the steady-state microtubule network appears to form by a combination of microtubule–microtubule and microtubule–cortex interactions, both of which increase microtubule stability. We used computational modeling to determine whether these microtubule parameters are sufficient to generate a steady-state acentrosomal microtubule network. Microtubules undergoing dynamic instability without any stabilization points continuously remodel their organization without reaching a steady-state network. However, the addition of increased microtubule stabilization at microtubule–microtubule and microtubule–cortex interactions results in the rapid assembly of a steady-state microtubule network in silico that is remarkably similar to networks formed in situ. These results define minimal parameters for the self-organization of an acentrosomal microtubule network.Keywords
This publication has 41 references indexed in Scilit:
- Microtubule-dependent microtubule nucleation based on recruitment of γ-tubulin in higher plantsNature Cell Biology, 2005
- Evolving endosomes: how many varieties and why?Current Opinion in Cell Biology, 2005
- Efficient formation of bipolar microtubule bundles requires microtubule-bound γ-tubulin complexesThe Journal of cell biology, 2005
- Encounters between Dynamic Cortical Microtubules Promote Ordering of the Cortical Array through Angle-Dependent Modifications of Microtubule Behavior[W]Plant Cell, 2004
- The Cortical Microtubule Array: From Dynamics to OrganizationPlant Cell, 2004
- Endocytic Adaptor Molecules Reveal an Endosomal Population of Clathrin by Total Internal Reflection Fluorescence MicroscopyJournal of Biological Chemistry, 2004
- The concept of self-organization in cellular architectureThe Journal of cell biology, 2001
- Observation and quantification of individual microtubule behavior in vivo: microtubule dynamics are cell-type specific.The Journal of cell biology, 1993
- Microtubules are stabilized in confluent epithelial cells but not in fibroblasts.The Journal of cell biology, 1990
- The subcellular organization of Madin-Darby canine kidney cells during the formation of a polarized epithelium.The Journal of cell biology, 1989