Actin filament turnover drives leading edge growth during myelin sheath formation in the central nervous system.
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ABSTRACT: During CNS development, oligodendrocytes wrap their plasma membrane around axons to generate multilamellar myelin sheaths. To drive growth at the leading edge of myelin at the interface with the axon, mechanical forces are necessary, but the underlying mechanisms are not known. Using an interdisciplinary approach that combines morphological, genetic, and biophysical analyses, we identified a key role for actin filament network turnover in myelin growth. At the onset of myelin biogenesis, F-actin is redistributed to the leading edge, where its polymerization-based forces push out non-adhesive and motile protrusions. F-actin disassembly converts protrusions into sheets by reducing surface tension and in turn inducing membrane spreading and adhesion. We identified the actin depolymerizing fac
SUBMITTER: Nawaz S
PROVIDER: S-EPMC4736019 | biostudies-literature | 2015 Jul
REPOSITORIES: biostudies-literature
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