Single Point Mutation from E22-to-K in Aβ Initiates Early-Onset Alzheimer’s Disease by Binding with Catalase

Author:

Jiang Wenjing12,YanYu 3,Yao Dandan12,Fei Xuechao1,Ai Li1,Di Yalan1,Zhang Jingnan4,Yue Xiangpei5,Zhao Shengjie5,He Rongqiao16,Lyu Jihui12ORCID,Tong Zhiqian1ORCID

Affiliation:

1. Beijing Institute of Brain Disorders, Laboratory of Brain Disorders, Ministry of Science and Technology, Collaborative Innovation Center for Brain Disorders, Capital Medical University, Beijing, China

2. Center for Cognitive Disorders, Beijing Geriatric Hospital, Beijing 100095, China

3. Chinese Institute of Rehabilitation Science, China Rehabilitation Research Center, Beijing Key Laboratory of Neural Injury and Rehabilitation, Beijing 100068, China

4. Tianjin First Central Hospital, Tianjin 300192, China

5. Department of Cognitive Sciences, Institute of Cognition and Brain Sciences, Beijing, China

6. State Key Laboratory of Brain & Cognitive Science, Institute of Biophysics, CAS Key Laboratory of Mental Health, University of Chinese Academy of Sciences (UCAS), Beijing 100101, China

Abstract

Amyloid-beta (Aβ) is a critical etiological factor for late-onset familial Alzheimer’s disease (AD). However, an early-onset AD has been found to be related with an Aβ mutation in glutamic acid 22-to-lysine (Italian type E22K). Why only one single point mutation at E22 residue induces AD remains unclear. Here, we report that a Chinese familial AD pedigree with E22K mutation was associated with higher levels of serum hydrogen peroxide (H2O2) and lower activity of catalase (a H2O2 degrading enzyme) than controls. Further, we found that E22K binding with catalase caused more severe H2O2 accumulation in the brains of E22K-injected rats than Aβ-injected rats. Unexpectedly, H2O2 bound with the mutation site 22K residue of E22K and elicited more rapid aggregation of E22K than Aβ in vitro. Moreover, H2O2 acted with E22K synergistically to induce higher cellular toxicity than with Aβ. Notably, intrahippocampal infusion of E22K led to more severe plaque deposition, neuron death, and more rapid memory decline than Aβ-injected rats. However, L-cysteine, a H2O2 scavenger, not only prevented self-aggregation of E22K but also reduced H2O2-promoted E22K assembly in vitro; subsequently, it alleviated Alzheimer-related phenotypes. Hence, E22K binding with catalase promotes the early onset of familial AD, and L-cys may reverse this disease.

Funder

Beijing Municipal Administration of Hospitals Clinical Medicine Development of Special Funding Support

Publisher

Hindawi Limited

Subject

Cell Biology,Ageing,General Medicine,Biochemistry

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