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Pharmacological inhibition of AIMP2 aggregation attenuates α-synuclein aggregation and toxicity in Parkinson's disease.

Authors :
Shin, Jeong-Yong
Lee, Bina
Ham, Sangwoo
Kim, Ji Hun
Kim, Hyojung
Kim, Heejeong
Jo, Min Gi
Kim, Hye Jung
Park, Sang Won
Kweon, Hee-Seok
Kim, Yong Jun
Yun, Seung Pil
Lee, Yunjong
Source :
Biomedicine & Pharmacotherapy. Dec2022, Vol. 156, pN.PAG-N.PAG. 1p.
Publication Year :
2022

Abstract

The aggregation of aminoacyl transfer RNA synthetase complex-interacting multifunctional protein-2 (AIMP2) accelerates α-synuclein aggregation via direct interaction, leading to enhanced dopaminergic neurotoxicity in Parkinson's disease (PD). Thus, it would be beneficial to prevent AIMP2 aggregation to suppress α-synucleinopathy in PD. In this study, we screened small compounds that could inhibit the in vitro aggregation of AIMP2 using a 1909 small-compound library. The AIMP2 inhibitors (SAI-04, 06, and 08) with the most effective inhibition of AIMP2 aggregation bind to AIMP2, disaggregate the pre-formed AIMP2 aggregates, and prevented AIMP2/α-synuclein coaggregation and cytotoxicity in SH-SY5Y cells. Moreover, AIMP2 inhibitors prevented α-synuclein preformed fibril (PFF)-induced pathological AIMP2 aggregation in both mouse cortical and embryonic stem cell-derived human dopaminergic neurons, thereby blocking PFF-induced α-synuclein aggregation and neurotoxicity. Collectively, our results suggest that the use of brain-permeable AIMP2 aggregation inhibitors may serve as an effective therapeutic strategy for α-synucleinopathy in PD. [Display omitted] • Thioflavin T assay screened small compounds that potently inhibit AIMP2 aggregation. • AIMP2 inhibitors disaggregates pre-formed AIMP2 aggregates in vitro. • Pharmacological inhibition of AIMP2 prevents AIMP2/α-synuclein-induced cytotoxicity. • AIMP2 inhibition attenuates α-synucleinopathy in cell models of Parkinson's disease. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07533322
Volume :
156
Database :
Academic Search Index
Journal :
Biomedicine & Pharmacotherapy
Publication Type :
Academic Journal
Accession number :
160212870
Full Text :
https://doi.org/10.1016/j.biopha.2022.113908