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Myeloid Innate Signaling Pathway Regulation by MALT1 Paracaspase Activity
Published on: January 7, 2019
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.
Abstract:
Cellular stress like ER and oxidative stress are the principle causative agents of various proteinopathies. Multifunctional protein PARK7/DJ-1 provides protection against cellular stress. Recently, insulin/IGF also has emerged as a neuro-protective molecule. However, it is not known whether DJ-1 and insulin/IGF complement each other for cellular protection in response to stress. In this study, we show for the first time, that in human and mouse neuronal cell lines, down regulation of DJ-1 for 48 h leads to compensatory upregulation of insulin/IGF signaling (IIS) pathway genes, namely, insulin receptor, insulin receptor substrate, and Akt under normal physiological conditions as well as in cellular stress conditions. Moreover, upon exogenous supply of insulin there is a marked increase in the IIS components both at gene and protein levels leading to down regulation and inactivation of GSK3β. By immunoprecipitation, it was observed that Sirt3 mediated deacetylation and activation of FoxO3a could not occur under DJ-1 downregulation. Transient DJ-1 downregulation also led to Akt mediated increased phosphorylation and nuclear exclusion of FoxO3a. When DJ-1 was downregulated increased interaction of Sirt3 with IRS2 was observed leading to its activation resulting in IIS upregulation. Thus, transient downregulation of DJ-1 leads to stimulation of IIS pathway by Sirt3 mediated IRS2 activation. Consequently, antiapoptotic program is triggered in neuronal cells via Akt-GSK3β-FoxO3a axis. © 2018 BioFactors, 44(3):224-236, 2018.
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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