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Loss of biliverdin reductase-A favors Tau hyper-phosphorylation in Alzheimer's disease

  • Nidhi Sharma
  • , Antonella Tramutola
  • , Chiara Lanzillotta
  • , Andrea Arena
  • , Carla Blarzino
  • , Tommaso Cassano
  • , D. Allan Butterfield
  • , Fabio Di Domenico
  • , Marzia Perluigi
  • , Eugenio Barone

Producción científica: Articlerevisión exhaustiva

59 Citas (Scopus)

Resumen

Hyper-active GSK-3β favors Tau phosphorylation during the progression of Alzheimer's disease (AD). Akt is one of the main kinases inhibiting GSK-3β and its activation occurs in response to neurotoxic stimuli including, i.e., oxidative stress. Biliverdin reductase-A (BVR-A) is a scaffold protein favoring the Akt-mediated inhibition of GSK-3β. Reduced BVR-A levels along with increased oxidative stress were observed early in the hippocampus of 3xTg-AD mice (at 6 months), thus suggesting that loss of BVR-A could be a limiting factor in the oxidative stress-induced Akt-mediated inhibition of GSK-3β in AD. We evaluated changes of BVR-A, Akt, GSK-3β oxidative stress and Tau phosphorylation levels: (a) in brain from young (6-months) and old (12-months) 3xTg-AD mice; and (b) in post-mortem inferior parietal lobule (IPL) samples from amnestic mild cognitive impairment (MCI), from AD and from age-matched controls. Furthermore, similar analyses were performed in vitro in cells lacking BVR-A and treated with H 2 O 2 . Reduced BVR-A levels along with: (a) increased oxidative stress; (b) reduced GSK-3β inhibition; and (c) increased Tau Ser404 phosphorylation (target of GSK-3β activity) without changes of Akt activation in young mice, were observed. Similar findings were obtained in MCI, consistent with the notion that this is a molecular mechanism disrupted in humans. Interestingly, cells lacking BVR-A and treated with H 2 O 2 showed reduced GSK-3β inhibition and increased Tau Ser404 phosphorylation, which resulted from a defect of Akt and GSK-3β physical interaction. Reduced levels of Akt/GSK-3β complex were confirmed in both young 3xTg-AD and MCI brain. We demonstrated that loss of BVR-A impairs the neuroprotective Akt-mediated inhibition of GSK-3β in response to oxidative stress, thus contributing to Tau hyper-phosphorylation in early stage AD. Such changes potential provide promising therapeutic targets for this devastating disorder.

Idioma originalEnglish
Páginas (desde-hasta)176-189
Número de páginas14
PublicaciónNeurobiology of Disease
Volumen125
DOI
EstadoPublished - may 2019

Nota bibliográfica

Publisher Copyright:
© 2019 Elsevier Inc.

Financiación

Authors acknowledge the contribution of Dr. Danilo Alunni-Fegatelli for his kind help in performing PCA analysis. This work was supported by funding from Banca d'Italia n° 12868/17 to EB; by founding from the Ministry of Education, Universities and Research (MIUR) under the SIR program n° RBSI144MT to FDD; by funding from Fondi Ateneo grant funded by Sapienza University n° C26H15JT9X to MP. We thank the Sanders-Brown Center of Aging of the University of Kentucky for providing us with well-characterized IPL specimens from MCI and AD brains and their age-matched controls. Authors acknowledge the contribution of Dr. Danilo Alunni-Fegatelli for his kind help in performing PCA analysis. This work was supported by funding from Banca d'Italia n° 12868/17 to EB; by founding from the Ministry of Education, Universities and Research (MIUR) under the SIR program n° RBSI144MT to FDD; by funding from Fondi Ateneo grant funded by Sapienza University n° C26H15JT9X to MP. We thank the Sanders-Brown Center of Aging of the University of Kentucky for providing us with well-characterized IPL specimens from MCI and AD brains and their age-matched controls.

FinanciadoresNúmero del financiador
Fondi Ateneo
University of Kentucky
Ministero dell’Istruzione, dell’Università e della RicercaRBSI144MT
Banca d'Italia12868/17
Università degli Studi di Roma Unitelma SapienzaC26H15JT9X

    ASJC Scopus subject areas

    • Neurology

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