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Publication : Intrinsic dynamic behavior of fascin in filopodia.

First Author  Aratyn YS Year  2007
Journal  Mol Biol Cell Volume  18
Issue  10 Pages  3928-40
PubMed ID  17671164 Mgi Jnum  J:128283
Mgi Id  MGI:3766664 Doi  10.1091/mbc.E07-04-0346
Citation  Aratyn YS, et al. (2007) Intrinsic dynamic behavior of fascin in filopodia. Mol Biol Cell 18(10):3928-40
abstractText  Recent studies showed that the actin cross-linking protein, fascin, undergoes rapid cycling between filopodial filaments. Here, we used an experimental and computational approach to dissect features of fascin exchange and incorporation in filopodia. Using expression of phosphomimetic fascin mutants, we determined that fascin in the phosphorylated state is primarily freely diffusing, whereas actin bundling in filopodia is accomplished by fascin dephosphorylated at serine 39. Fluorescence recovery after photobleaching analysis revealed that fascin rapidly dissociates from filopodial filaments with a kinetic off-rate of 0.12 s(-1) and that it undergoes diffusion at moderate rates with a coefficient of 6 microm(2)s(-1). This kinetic off-rate was recapitulated in vitro, indicating that dynamic behavior is intrinsic to the fascin cross-linker. A computational reaction-diffusion model showed that reversible cross-linking is required for the delivery of fascin to growing filopodial tips at sufficient rates. Analysis of fascin bundling indicated that filopodia are semiordered bundles with one bound fascin per 25-60 actin monomers.
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