Scinovex
article Open AccessTop 10% cited

Kinesin-1 and Dynein Are the Primary Motors for Fast Transport of Mitochondria in <i>Drosophila</i> Motor Axons

Molecular Biology of the Cell · 2006 · Vol. 17(4) · pp. 2057–2068
Aaron D. PillingDai HoriuchiCurtis M. LivelyWilliam M. Saxton

Abstract

To address questions about mechanisms of filament-based organelle transport, a system was developed to image and track mitochondria in an intact Drosophila nervous system. Mutant analyses suggest that the primary motors for mitochondrial movement in larval motor axons are kinesin-1 (anterograde) and cytoplasmic dynein (retrograde), and interestingly that kinesin-1 is critical for retrograde transport by dynein. During transport, there was little evidence that force production by the two opposing motors was competitive, suggesting a mechanism for alternate coordination. Tests of the possible coordination factor P150(Glued) suggested that it indeed influenced both motors on axonal mitochondria, but there was no evidence that its function was critical for the motor coordination mechanism. Observation of organelle-filled axonal swellings ("organelle jams" or "clogs") caused by kinesin and dynein mutations showed that mitochondria could move vigorously within and pass through them, indicating that they were not the simple steric transport blockades suggested previously. We speculate that axonal swellings may instead reflect sites of autophagocytosis of senescent mitochondria that are stranded in axons by retrograde transport failure; a protective process aimed at suppressing cell death signals and neurodegeneration.

Microtubule and mitosis dynamicsMitochondrial Function and PathologyCellular transport and secretionKinesinBiologyDyneinCell biologyMotor proteinDrosophila (subgenus)MitochondrionMicrotubuleOrganelleMolecular motor

MeSH terms

Dynactin ComplexAnimalsAxonsBiological TransportDrosophilaDyneinsMicrotubule-Associated ProteinsMitochondriaMotor NeuronsMutationNervous SystemKinesinsDrosophila Proteins

Funding

  • National Institutes of Health
Citations
698
FWCI
9.76
field-weighted impact
References
69
Percentile
99%
vs. same field & year
Citations per year
Cited by
The axonal transport of mitochondria
Journal of Cell Science · 2012 · 1,194 citations
References
The axonal transport of mitochondria
Journal of Cell Science · 2012 · 1,194 citations
The axonal transport of mitochondria
Journal of Cell Science · 2005 · 755 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.