4.3 Article

Kif5 regulates mitochondrial movement, morphology, function and neuronal survival

期刊

MOLECULAR AND CELLULAR NEUROSCIENCE
卷 72, 期 -, 页码 22-33

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.mcn.2015.12.014

关键词

kif5; Mitochondrial dynamics; Mitochondrial remodelling excitotoxicity; Mitochondrial trafficking; ro-GFP; ATeam

资金

  1. NSERC [RGPIN/327651]
  2. CIHR New Investigator Award in the Area of Aging [SIC-88137]
  3. Parkinson Society BC [201023]
  4. Faculty of Graduate Studies, Simon Fraser University
  5. Canadian Foundation for Innovation
  6. British Columbia Knowledge Development Fund [804457]
  7. Simon Fraser University

向作者/读者索取更多资源

Due to the unique architecture of neurons, trafficking of mitochondria throughout processes to regions of high energetic demand is critical to sustain neuronal health. It has been suggested that compromised mitochondrial trafficking may play a role in neurodegenerative diseases. We evaluated the consequences of disrupted kif5c-mediated mitochondrial trafficking on mitochondrial form and function in primary rat cortical neurons. Morphological changes in mitochondria appeared to be due to remodelling, a phenomenon distinct from mitochondrial fission, which resulted in punctate-shaped mitochondria. We also demonstrated that neurons displaying punctate mitochondria exhibited relatively decreased ROS and increased cellular ATP levels using ROS-sensitive GFP and ATP FRET probes, respectively. Somewhat unexpectedly, neurons overexpressing the dominant negative form of kif5c exhibited enhanced survival following excitotoxicity, suggesting that the impairment of mitochondrial trafficking conferred some form of neuroprotection. However, when neurons were exposed to H2O2, disruption of kif5c exacerbated cell death indicating that the effect on cell viability was dependent on the mode of toxicity. Our results suggest a novel role of kif5c. In addition to mediating mitochondrial transport, kif5c plays a role in the mechanism of regulating mitochondrial morphology. Our results also suggest that kif5c mediated mitochondrial dynamics may play an important role in regulating mitochondrial function and in turn cellular health. Moreover, our studies demonstrate an interesting interplay between the regulation of mitochondrial motility and morphology. (C) 2016 Elsevier Inc. All rights reserved.

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