Transduced Tat-PRAS40 prevents dopaminergic neuronal cell death through ROS inhibition and interaction with 14-3-3σ protein

Won Sik Eum, Dae Won Kim, Eun Ji Yeo, Hyeon Ji Yeo, Yeon Joo Choi, Hyun Ju Cha, Jinseu Park, Kyu Hyung Han, Duk Soo Kim, Yeon Hee Yu, Sung Woo Cho, Oh Shin Kwon, Yong Jun Cho, Min Jea Shin, Soo Young Choi

Research output: Contribution to journalArticlepeer-review

10 Scopus citations

Abstract

Proline rich Akt substrate (PRAS40) is a component of mammalian target of rapamycin complex 1 (mTORC1) and activated mTORC1 plays important roles for cellular survival in response to oxidative stress. However, the roles of PRAS40 in dopaminergic neuronal cell death have not yet been examined. Here, we examined the roles of Tat-PRAS40 in MPP+- and MPTP-induced dopaminergic neuronal cell death. Our results showed that Tat-PRAS40 effectively transduced into SH-SY5Y cells and inhibited DNA damage, ROS generation, and apoptotic signaling in MPP+-induced SH-SY5Y cells. Further, these protective mechanisms of Tat-PRAS40 protein display through phosphorylation of Tat-PRAS40, Akt and direct interaction with 14-3-3σ protein, but not via the mTOR-dependent signaling pathway. In a Parkinson's disease animal model, Tat-PRAS40 transduced into dopaminergic neurons in mouse brain and significantly protected against dopaminergic cell death by phosphorylation of Tat-PRAS40, Akt and interaction with 14-3-3σ protein. In this study, we demonstrated for the first time that Tat-PRAS40 directly protects against dopaminergic neuronal cell death. These results indicate that Tat-PRAS40 may provide a useful therapeutic agent against oxidative stress-induced dopaminergic neuronal cell death, which causes diseases such as PD.

Original languageEnglish
Pages (from-to)418-429
Number of pages12
JournalFree Radical Biology and Medicine
Volume172
DOIs
StatePublished - 20 Aug 2021

Keywords

  • Dopaminergic neurons
  • Oxidative stress
  • Parkinson's disease
  • Protein therapy
  • Tat-PRAS40

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