Insulin signaling pathway protects neuronal cell lines by Sirt3 mediated IRS2 activation

Neha Mishra1, Sonam Lata1, Priyanka Deshmukh1

  • 1Department of Biotechnology, Savitribai Phule Pune University (Former Pune University), Ganeshkhind Road, Pune, Maharashtra 411007, India.

Insights

Downregulating PARK7/DJ-1 protein compensates by upregulating insulin/IGF signaling (IIS) pathway genes. This protective mechanism involves Sirt3 activation and triggers an antiapoptotic program in neuronal cells.

Area of Science:

  • Neurobiology
  • Cellular Stress Response
  • Molecular Mechanisms of Neuroprotection

Background:

  • Proteinopathies arise from cellular stress, such as ER and oxidative stress.
  • PARK7/DJ-1 is a multifunctional protein offering cellular protection against stress.
  • Insulin/IGF signaling (IIS) is recognized for its neuroprotective properties.

Purpose of the Study:

  • To investigate the interplay between DJ-1 and insulin/IGF signaling in cellular protection.
  • To determine if DJ-1 and insulin/IGF pathways complement each other under stress conditions.

Main Methods:

  • Utilized human and mouse neuronal cell lines.
  • Investigated gene and protein expression of IIS components (insulin receptor, IRS, Akt).
  • Employed immunoprecipitation to study protein interactions (Sirt3, IRS2, FoxO3a) and modifications (acetylation, phosphorylation).

Main Results:

  • DJ-1 downregulation led to compensatory upregulation of IIS pathway genes and proteins.
  • Exogenous insulin increased IIS components, inactivating GSK3β.
  • DJ-1 downregulation impaired Sirt3-mediated FoxO3a activation but enhanced Sirt3 interaction with IRS2, activating IIS.
  • Akt-mediated phosphorylation and nuclear exclusion of FoxO3a occurred under DJ-1 downregulation.

Conclusions:

  • Transient DJ-1 downregulation stimulates the IIS pathway via Sirt3-mediated IRS2 activation.
  • An antiapoptotic program is initiated in neuronal cells through the Akt-GSK3β-FoxO3a axis.
  • This study reveals a novel compensatory mechanism between DJ-1 and IIS for neuronal resilience.

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