Article

Krüppel-like factor 9 alleviates Alzheimer’s disease via IDE-mediated Aβ degradation

Yue-yao Feng1, Jing-ran Hao1, Yu-jie Zhang1, Tong-tong Qiu1, Meng-lin Zhang1, Wei Qiao1, Jin-jin Wu1, Ping Qiu1, Chao-fan Xu1, Yin-liang Zhang1, Chun-yuan Du1, Zhe Pan2, Yong-sheng Chang1,3
1 Key Laboratory of Immune Microenvironment and Disease (Ministry of Education), Tianjin Key Laboratory of Cellular Homeostasis and Disease, Department of Physiology and Pathophysiology, Tianjin Medical University, Tianjin 300052, China
2 Department of Endocrinology and Metabolism, The Second Hospital of Shandong University, Jinan 250033, China
3 Tianjin Key Laboratory of Retinal Functions and Diseases, Tianjin Branch of National Clinical Research Center for Ocular Disease, Eye Institute and School of Optometry, Tianjin Medical University Eye Hospital, Tianjin 300052, China
Correspondence to: Zhe Pan: panzhe0519@163.com, Yong-sheng Chang: changys@tmu.edu.cn,
DOI: 10.1038/s41401-025-01491-0
Received: 25 September 2024
Accepted: 19 January 2025
Advance online: 17 February 2025

Abstract

The deposition of β-amyloid (Aβ) in the brain is a crucial factor in the pathogenesis of Alzheimer’s disease (AD). Insulin-degrading enzyme (IDE) plays a critical role in the balance between Aβ production and degradation. However, the regulatory mechanisms of IDE are not yet fully understood. Therefore, uncovering additional IDE regulatory mechanisms will help elucidate the pathogenesis of AD and identify key therapeutic targets for this disease. This study revealed that global Krüppel-like factor 9-mutant (Klf9−/−) mice exhibited impaired cognitive function. Additionally, we found that Klf9 expression in hippocampal tissue was reduced in APPswe/PS1dE9 (APP/PS1) mice. This study also showed that Klf9 stimulates IDE expression and promotes the Aβ degradation process by directly binding to IDE and activating its transcription. Silencing IDE blocked the Klf9-induced Aβ degradation process. We stereotactically injected an adeno-associated virus to selectively overexpress IDE (AAV-IDE) in the hippocampal neurons of Klf9−/− mice and found that the overexpression of IDE in hippocampal neurons ameliorated cognitive deficits and reduced the Aβ content in Klf9−/− mice. Additionally, we also stereotactically injected AAV-Klf9 into the hippocampal neurons of APP/PS1 mice and found that overexpression of Klf9 in hippocampal neurons ameliorated cognitive deficits and reduced Aβ levels in APP/PS1 mice. These findings suggest that downregulation of Klf9 may be a key factor in AD progression, as it reduces Aβ clearance by decreasing IDE expression. Overexpression or activation of Klf9 may be a potential strategy for preventing the pathogenesis of AD.

Keywords: Klf9; Alzheimer disease; amyloid beta-peptides; IDE; cognition

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