4.6 Article

Jmy regulates oligodendrocyte differentiation via modulation of actin cytoskeleton dynamics

期刊

GLIA
卷 66, 期 9, 页码 1826-1844

出版社

WILEY
DOI: 10.1002/glia.23342

关键词

actin cytoskeleton; ImageJ macro; Jmy; live imaging; oligodendrocyte differentiation

资金

  1. FEDER funds through the Operational Competitiveness Programme - COMPETE
  2. FCT Fundacao para a Ciencia e a Tecnologia [FCOMP-01-0124-FEDER 021333, NORTE-01-0145-FEDER-000008, PTDC/SAU/NMC/119937/2010]
  3. FCT [SFRH/BD/90301/2012, SFRH/BPD/79417/2011]
  4. Marie Curie Actions [IEF 2010, 276322]
  5. FCT postdoctoral fellowship [SFRH/BPD/79417/2011]
  6. [SFRH/BPD/90268/2012]
  7. Fundação para a Ciência e a Tecnologia [PTDC/SAU-NMC/119937/2010, SFRH/BD/90301/2012] Funding Source: FCT

向作者/读者索取更多资源

During central nervous system development, oligodendrocytes form structurally and functionally distinct actin-rich protrusions that contact and wrap around axons to assemble myelin sheaths. Establishment of axonal contact is a limiting step in myelination that relies on the oligodendrocyte's ability to locally coordinate cytoskeletal rearrangements with myelin production, under the control of a transcriptional differentiation program. The molecules that provide fine-tuning of actin dynamics during oligodendrocyte differentiation and axon ensheathment remain largely unidentified. We performed transcriptomics analysis of soma and protrusion fractions from rat brain oligodendrocyte progenitors and found a subcellular enrichment of mRNAs in newly-formed protrusions. Approximately 30% of protrusion-enriched transcripts encode proteins related to cytoskeleton dynamics, including the junction mediating and regulatory protein Jmy, a multifunctional regulator of actin polymerization. Here, we show that expression of Jmy is upregulated during myelination and is required for the assembly of actin filaments and protrusion formation during oligodendrocyte differentiation. Quantitative morphodynamics analysis of live oligodendrocytes showed that differentiation is driven by a stereotypical actin network-dependent cellular shaping program. Disruption of actin dynamics via knockdown of Jmy leads to a program fail resulting in oligodendrocytes that do not acquire an arborized morphology and are less efficient in contacting neurites and forming myelin wraps in co-cultures with neurons. Our findings provide new mechanistic insight into the relationship between cell shape dynamics and differentiation in development.

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