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Identification of ortho catechol-containing isoflavone as a privileged scaffold that directly prevents the aggregation of both amyloid β plaques and tau-mediated neurofibrillary tangles and its in vivo evaluation
  • Son, Seung Hwan ;
  • Do, Ji Min ;
  • Yoo, Ji Na ;
  • Lee, Hyun Woo ;
  • Kim, Nam Kwon ;
  • Yoo, Hyung Seok ;
  • Gee, Min Sung ;
  • Kim, Jong Ho ;
  • Seong, Ji Hye ;
  • Inn, Kyung Soo ;
  • Seo, Min Duk ;
  • Lee, Jong Kil ;
  • Kim, Nam Jung
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Publication Year
2021-08-01
Publisher
Academic Press Inc.
Citation
Bioorganic Chemistry, Vol.113
Keyword
Alzheimer's diseaseAmyloid βCatecholPolyhydroxyisoflavoneTau
Mesh Keyword
Alzheimer DiseaseAmyloid beta-PeptidesAnimalsBrainCatecholsDisease Models, AnimalDrug DesignIsoflavonesMaze LearningMiceMice, Inbred C57BLMice, TransgenicNeurofibrillary TanglesNeuroprotective AgentsPeptide FragmentsProtein Aggregatestau Proteins
All Science Classification Codes (ASJC)
BiochemistryMolecular BiologyDrug DiscoveryOrganic Chemistry
Abstract
In this study, polyhydroxyisoflavones that directly prevent the aggregation of both amyloid β (Aβ) and tau were expediently synthesized via divergent Pd(0)-catalyzed Suzuki-Miyaura coupling and then biologically evaluated. By preliminary structure–activity relationship studies using thioflavin T (ThT) assays, an ortho-catechol containing isoflavone scaffold was proven to be crucial for preventing both Aβ aggregation and tau-mediated neurofibrillary tangle formation. Additional TEM experiment confirmed that ortho-catechol containing isoflavone 4d significantly prevented the aggregation of both Aβ and tau. To investigate the mode of action (MOA) of 4d, which possesses an ortho-catechol moiety, 1H-15N HSQC NMR analysis was thoroughly performed and the result indicated that 4d could directly inhibit both the formation of Aβ42 fibrils and the formation of tau-derived neurofibrils, probably through the catechol-mediated nucleation of tau. Finally, 4d was demonstrated to alleviate cognitive impairment and pathologies related to Alzheimer's disease in a 5XFAD transgenic mouse model.
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/32103
DOI
https://doi.org/10.1016/j.bioorg.2021.105022
Fulltext

Type
Article
Funding
This work was supported by the National Research Foundation of Korea (NRF) grant funded by the Korea government (MSIT) (NRF-2020R1F1A1064755 and 2020R1A2C300888911).
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Seo, Min-Duk서민덕
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