Equilibrative nucleoside transporter 1 inhibition rescues energy dysfunction and pathology in a model of tauopathy

Author:

Chang Ching-Pang,Chang Ya-Gin,Chuang Pei-Yun,Nguyen Thi Ngoc Anh,Wu Kuo-Chen,Chou Fang-Yi,Cheng Sin-Jhong,Chen Hui-Mei,Jin Lee-Way,Carvalho Kevin,Huin Vincent,Buée Luc,Liao Yung-Feng,Lin Chun-Jung,Blum David,Chern YijuangORCID

Abstract

AbstractTau pathology is instrumental in the gradual loss of neuronal functions and cognitive decline in tauopathies, including Alzheimer’s disease (AD). Earlier reports showed that adenosine metabolism is abnormal in the brain of AD patients while consequences remained ill-defined. Herein, we aimed at investigating whether manipulation of adenosine tone would impact Tau pathology, associated molecular alterations and subsequent neurodegeneration. We demonstrated that treatment with an inhibitor (J4) of equilibrative nucleoside transporter 1 (ENT1) exerted beneficial effects in a mouse model of Tauopathy. Treatment with J4 not only reduced Tau hyperphosphorylation but also rescued memory deficits, mitochondrial dysfunction, synaptic loss, and abnormal expression of immune-related gene signatures. These beneficial effects were particularly ascribed to the ability of J4 to suppress the overactivation of AMPK (an energy reduction sensor), suggesting that normalization of energy dysfunction mitigates neuronal dysfunctions in Tauopathy. Collectively, these data highlight that targeting adenosine metabolism is a novel strategy for tauopathies.

Funder

Academia Sinica

Ministry of Science and Technology, Taiwan

National Institutes of Health

Agence Nationale de la Recherche

Publisher

Springer Science and Business Media LLC

Subject

Cellular and Molecular Neuroscience,Clinical Neurology,Pathology and Forensic Medicine

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