Amyloid-β toxicity modulates tau phosphorylation through the PAX6 signalling pathway

Author:

Zhang Yalun1234,Zhang Yi1,Aman Yahyah5,Ng Cheung Toa12,Chau Wing-Hin1,Zhang Zhigang1,Yue Ming1ORCID,Bohm Christopher34,Jia Yizhen1,Li Siwen1,Yuan Qiuju6,Griffin Jennifer34,Chiu Kin7,Wong Dana S M1,Wang Binbin8,Jin Dongyan1,Rogaeva Ekaterina34,Fraser Paul E34,Fang Evandro F5,St George-Hyslop Peter49,Song You-Qiang1210ORCID

Affiliation:

1. School of Biomedical Sciences, University of Hong Kong, Hong Kong, China

2. HKU-Shenzhen Institute of Research and Innovation, University of Hong Kong, Hong Kong, China

3. Tanz Centre for Research in Neurodegenerative Diseases, University of Toronto, Toronto, ON, M5T 0S8, Canada

4. Department of Medical Biophysics, and Medicine (Neurology), University of Toronto, Krembil Discovery Tower, Toronto, ON, M5T 2S8, Canada

5. Department of Clinical Molecular Biology, University of Oslo and the Akershus University Hospital, 1478 Lørenskog, Norway

6. School of Chinese Medicine, Faculty of Medicine, The Chinese University of Hong Kong, Shatin, Hong Kong, China

7. Department of Ophthalmology, University of Hong Kong, Hong Kong, China

8. Department of Genetics, National Research Institute for Family Planning, Beijing, China

9. Cambridge Institute for Medical Research, Department of Clinical Neurosciences, University of Cambridge, Cambridge CB2 0XY, UK

10. The State Key Laboratory of Brain and Cognitive Sciences, University of Hong Kong, Hong Kong, China

Abstract

Abstract The molecular link between amyloid-β plaques and neurofibrillary tangles, the two pathological hallmarks of Alzheimer’s disease, is still unclear. Increasing evidence suggests that amyloid-β peptide activates multiple regulators of cell cycle pathways, including transcription factors CDKs and E2F1, leading to hyperphosphorylation of tau protein. However, the exact pathways downstream of amyloid-β-induced cell cycle imbalance are unknown. Here, we show that PAX6, a transcription factor essential for eye and brain development which is quiescent in adults, is increased in the brains of patients with Alzheimer’s disease and in APP transgenic mice, and plays a key role between amyloid-β and tau hyperphosphorylation. Downregulation of PAX6 protects against amyloid-β peptide-induced neuronal death, suggesting that PAX6 is a key executor of the amyloid-β toxicity pathway. Mechanistically, amyloid-β upregulates E2F1, followed by the induction of PAX6 and c-Myb, while Pax6 is a direct target for both E2F1 and its downstream target c-Myb. Furthermore, PAX6 directly regulates transcription of GSK-3β, a kinase involved in tau hyperphosphorylation and neurofibrillary tangles formation, and its phosphorylation of tau at Ser356, Ser396 and Ser404. In conclusion, we show that signalling pathways that include CDK/pRB/E2F1 modulate neuronal death signals by activating downstream transcription factors c-Myb and PAX6, leading to GSK-3β activation and tau pathology, providing novel potential targets for pharmaceutical intervention.

Funder

National Natural Science Foundation of China

Research Grant council

Hong Kong Special Administrative Region

HELSE SØR-ØST

Research Council of Norway

Akershus University Hospital Strategic

Publisher

Oxford University Press (OUP)

Subject

Clinical Neurology

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