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Anthraquinone Derivative Reduces Tau Oligomer Progression by Inhibiting Cysteine-Cysteine Interaction.
Areche, Carlos; Zapata, Francisca; González, Mathias; Díaz, Esteban; Montecinos, Rubén; Hernández, Marcos; Melo, Francisco; Cornejo, Alberto.
Afiliação
  • Areche C; Departamento de Química, Facultad de Ciencias Universidad de Chile Las Palmeras 3425 7800003 Santiago-Chile.
  • Zapata F; Escuela Tecnología Médica Facultad de Medicina Sazie 2315 8370092 Santiago-Chile.
  • González M; Escuela Tecnología Médica Facultad de Medicina Sazie 2315 8370092 Santiago-Chile.
  • Díaz E; Escuela Tecnología Médica Facultad de Medicina Sazie 2315 8370092 Santiago-Chile.
  • Montecinos R; Departamento de Física Avenida Ecuador 3493 9170124 Santiago-Chile.
  • Hernández M; Departamento de Química, Facultad de Ciencias Universidad de Chile Las Palmeras 3425 7800003 Santiago-Chile.
  • Melo F; Departamento de Física Avenida Ecuador 3493 9170124 Santiago-Chile.
  • Cornejo A; Escuela Tecnología Médica Facultad de Medicina Sazie 2315 8370092 Santiago-Chile.
ChemistryOpen ; 8(5): 554-559, 2019 May.
Article em En | MEDLINE | ID: mdl-31065505
Tau protein is a natively unfolded protein whose primary role is to participate in axonal transport closely associated with microtubules. Neurodegenerative disorders including Alzheimer's disease and Tauopathies involved tau protein that is found hyperphosphorylated in vivo; then, tau is detached from microtubules to form toxic aggregates or oligomers, which have a deleterious effect on membranes, triggering an inflammatory response. Considering finding tau inhibitors, we isolated two compounds in the ethyl acetate extract from Xanthoria ectaneoides (Nyl.) Zahlbr; ergosterol peroxide (1) and a new anthraquinone (2). We established the structure through spectroscopic data and biogenic considerations, and we named it "2-hydroxy-3-((8-hydroxy-3-methoxy-6-methylanthraquinonyl)oxy)propanoic acid". This new anthraquinone was evaluated as a tau inhibitor by ThT fluorescence, dot blot assays and total internal reflection fluorescence microscopy. Our results strongly suggest that this anthraquinone remodels soluble oligomers and diminishes ß-sheet content. Moreover, through the fluorescence labeling of cysteine inside of the microtubule-binding domain (4R), we showed that this anthraquinone could reduce the oligomers progression by inhibiting cysteine interactions.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article