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Microtubule regulators act in the nervous system to modulate fat metabolism and longevity through DAF-16 in C. elegans.

Aiping Xu | Zhao Zhang | Su-Hyuk Ko | Alfred L Fisher | Zhijie Liu | Lizhen Chen
Aging cell | 2019

Microtubule (MT) regulation is involved in both neuronal function and the maintenance of neuronal structure, and MT dysregulation appears to be a general downstream indicator and effector of age-related neurodegeneration. But the role of MTs in natural aging is largely unknown. Here, we demonstrate a role of MT regulators in regulating longevity. We find that loss of EFA-6, a modulator of MT dynamics, can delay both neuronal aging and extend the lifespan of C. elegans. Through the use of genetic mutants affecting other MT-regulating genes in C. elegans, we find that loss of MT stabilizing genes (including ptrn-1 and ptl-1) shortens lifespan, while loss of MT destabilizing gene hdac-6 extends lifespan. Via the use of tissue-specific transgenes, we further show that these MT regulators can act in the nervous system to modulate lifespan. Through RNA-seq analyses, we found that genes involved in lipid metabolism were differentially expressed in MT regulator mutants, and via the use of Nile Red and Oil Red O staining, we show that the MT regulator mutants have altered fat storage. We further find that the increased fat storage and extended lifespan of the long-lived MT regulator mutants are dependent on the DAF-16/FOXO transcription factor. Our results suggest that neuronal MT status might affect organismal aging through DAF-16-regulated changes in fat metabolism, and therefore, MT-based therapies might represent a novel intervention to promote healthy aging.

Pubmed ID: 30638295

Research resources used in this publication

None found

Antibodies used in this publication

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Associated grants

  • Agency: V Foundation, International
    Id: RP160732
  • Agency: San Antonio Nathan Shock Center, International
    Id: CPRIT RR160017
  • Agency: CPRIT Core Facility Award, International
  • Agency: V Foundation, International
    Id: AG044768
  • Agency: Voelcker Fund, International
  • Agency: San Antonio Nathan Shock Center, International
    Id: 3P30 AG013319-23S2
  • Agency: V Foundation, International
    Id: V2016-017
  • Agency: NCI NIH HHS, United States
    Id: U54 CA217297
  • Agency: V Foundation, International
    Id: ES017761
  • Agency: V Foundation, International
    Id: AG013319
  • Agency: V Foundation, International
    Id: 1S10OD021805-01
  • Agency: V Foundation, International
    Id: CCR17483391
  • Agency: NIA NIH HHS, United States
    Id: P30 AG013319
  • Agency: NCI NIH HHS, United States
    Id: P30 CA054174
  • Agency: Susan G. Komen, United States
    Id: PRJ001
  • Agency: San Antonio Nathan Shock Center, International
    Id: NS102782
  • Agency: Susan G. Komen, United States
    Id: 1U54CA217297-01/

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