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Differential interactome mapping of aggregation prone/prion-like proteins under stress: novel links to stress granule biology.


ABSTRACT:

Background

Aberrant stress granules (SGs) are emerging as prime suspects in the nucleation of toxic protein aggregates. Understanding the molecular networks linked with aggregation-prone proteins (prion protein, synuclein, and tau) under stressful environments is crucial to understand pathophysiological cascades associated with these proteins.

Methods

We characterized and validated oxidative stress-induced molecular network changes of endogenous aggregation-prone proteins (prion protein, synuclein, and tau) by employing immunoprecipitation coupled with mass spectrometry analysis under basal and oxidative stress conditions. We used two different cell models (SH-SY5Y: human neuroblastoma and HeLa cell line) to induce oxidative stress using a well-known inducer (sodium arsenite) of oxidative stress.

Results

Overall, we identified 597 proteins as potential interaction partners. Our comparative interactome mapping provides comprehensive network reorganizations of three aggregation-prone hallmark proteins, establish novel interacting partners and their dysregulation, and validates that prion protein and synuclein localize in cytoplasmic SGs. Localization of prion protein and synuclein in TIA1-positive SGs provides an important link between SG pathobiology and aggregation-prone proteins. In addition, dysregulation (downregulation) of prion protein and exportin-5 protein, and translocation of exportin-5 into the nucleus under oxidative stress shed light on nucleocytoplasmic transport defects during the stress response.

Conclusions

The current study contributes to our understanding of stress-mediated network rearrangements and posttranslational modifications of prion/prion-like proteins. Localization of prion protein and synuclein in the cytoplasmic SGs provides an important link between stress granule pathobiology and aggregation-prone proteins. In addition, our findings demonstrate nucleocytoplasmic transport defects after oxidative stress via dysregulation and nuclear accumulation of exportin-5.

SUBMITTER: Younas N 

PROVIDER: S-EPMC10693047 | biostudies-literature | 2023 Dec

REPOSITORIES: biostudies-literature

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Publications

Differential interactome mapping of aggregation prone/prion-like proteins under stress: novel links to stress granule biology.

Younas Neelam N   Zafar Saima S   Saleem Tayyaba T   Fernandez Flores Leticia Camila LC   Younas Abrar A   Schmitz Matthias M   Zerr Inga I  

Cell & bioscience 20231201 1


<h4>Background</h4>Aberrant stress granules (SGs) are emerging as prime suspects in the nucleation of toxic protein aggregates. Understanding the molecular networks linked with aggregation-prone proteins (prion protein, synuclein, and tau) under stressful environments is crucial to understand pathophysiological cascades associated with these proteins.<h4>Methods</h4>We characterized and validated oxidative stress-induced molecular network changes of endogenous aggregation-prone proteins (prion p  ...[more]

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