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Interplay between kinesin-1 and cortical dynein during axonal outgrowth and microtubule organization in Drosophila neurons.

Urko del Castillo | Michael Winding | Wen Lu | Vladimir I Gelfand
eLife | 2015

In this study, we investigated how microtubule motors organize microtubules in Drosophila neurons. We showed that, during the initial stages of axon outgrowth, microtubules display mixed polarity and minus-end-out microtubules push the tip of the axon, consistent with kinesin-1 driving outgrowth by sliding antiparallel microtubules. At later stages, the microtubule orientation in the axon switches from mixed to uniform polarity with plus-end-out. Dynein knockdown prevents this rearrangement and results in microtubules of mixed orientation in axons and accumulation of microtubule minus-ends at axon tips. Microtubule reorganization requires recruitment of dynein to the actin cortex, as actin depolymerization phenocopies dynein depletion, and direct recruitment of dynein to the membrane bypasses the actin requirement. Our results show that cortical dynein slides 'minus-end-out' microtubules from the axon, generating uniform microtubule arrays. We speculate that differences in microtubule orientation between axons and dendrites could be dictated by differential activity of cortical dynein.

Pubmed ID: 26615019

Research resources used in this publication

None found

Antibodies used in this publication

None found

Associated grants

  • Agency: NIGMS NIH HHS, United States
    Id: R01 GM052111
  • Agency: NIH HHS, United States
    Id: 2P40OD010949-10A1
  • Agency: NIH HHS, United States
    Id: P40 OD018537
  • Agency: NIH HHS, United States
    Id: P40 OD010949
  • Agency: NIH HHS, United States
    Id: P40OD018537
  • Agency: NIGMS NIH HHS, United States
    Id: GM 052111
  • Agency: NIGMS NIH HHS, United States
    Id: R01 GM124029

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