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Alpha-Synuclein Interaction with UBL3 Is Upregulated by Microsomal Glutathione S-Transferase 3, Leading to Increased Extracellular Transport of the Alpha-Synuclein under Oxidative Stress.
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- المؤلفون: Yan, Jing1 (AUTHOR) ; Kahyo, Tomoaki1,2 (AUTHOR) ; Zhang, Hengsen1 (AUTHOR) ; Ping, Yashuang1 (AUTHOR) ; Zhang, Chi1 (AUTHOR) ; Jiang, Shuyun1,3 (AUTHOR) ; Ji, Qianqing1 (AUTHOR) ; Ferdous, Rafia1 (AUTHOR) ; Islam, Md. Shoriful1 (AUTHOR) ; Oyama, Soho1 (AUTHOR) ; Aramaki, Shuhei1,4,5 (AUTHOR) ; Sato, Tomohito1 (AUTHOR) ; Mimi, Mst. Afsana1 (AUTHOR) ; Hasan, Md. Mahmudul1 (AUTHOR) ; Setou, Mitsutoshi1,6 (AUTHOR)
- المصدر:
International Journal of Molecular Sciences. Jul2024, Vol. 25 Issue 13, p7353. 12p.
- الموضوع:
- معلومة اضافية
- نبذة مختصرة :
Aberrant aggregation of misfolded alpha-synuclein (α-syn), a major pathological hallmark of related neurodegenerative diseases such as Parkinson's disease (PD), can translocate between cells. Ubiquitin-like 3 (UBL3) is a membrane-anchored ubiquitin-fold protein and post-translational modifier. UBL3 promotes protein sorting into small extracellular vesicles (sEVs) and thereby mediates intercellular communication. Our recent studies have shown that α-syn interacts with UBL3 and that this interaction is downregulated after silencing microsomal glutathione S-transferase 3 (MGST3). However, how MGST3 regulates the interaction of α-syn and UBL3 remains unclear. In the present study, we further explored this by overexpressing MGST3. In the split Gaussia luciferase complementation assay, we found that the interaction between α-syn and UBL3 was upregulated by MGST3. While Western blot and RT-qPCR analyses showed that silencing or overexpression of MGST3 did not significantly alter the expression of α-syn and UBL3, the immunocytochemical staining analysis indicated that MGST3 increased the co-localization of α-syn and UBL3. We suggested roles for the anti-oxidative stress function of MGST3 and found that the effect of MGST3 overexpression on the interaction between α-syn with UBL3 was significantly rescued under excess oxidative stress and promoted intracellular α-syn to extracellular transport. In conclusion, our results demonstrate that MGST3 upregulates the interaction between α-syn with UBL3 and promotes the interaction to translocate intracellular α-syn to the extracellular. Overall, our findings provide new insights and ideas for promoting the modulation of UBL3 as a therapeutic agent for the treatment of synucleinopathy-associated neurodegenerative diseases. [ABSTRACT FROM AUTHOR]
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