Aβ-induced CaMKII hyperactivation is associated with impaired lysosomal maturation and mitophagy

Alzheimer’s disease (AD) is characterized by amyloid-β (Aβ)-associated synaptic failure, intracellular Ca 2+ dysregulation, and progressive impairment of lysosome-dependent clearance pathways. Aβ induces sustained Ca 2+ overload, resulting in pathological hyperactivation of CaMKII, which normally participates in the regulation of autophagy. However, whether CaMKII hyperactivation contributes to Aβ-induced late-stage autophagy–lysosomal dysfunction and mitophagy failure remains unclear. This study aimed to examine the effects of the CaMKII inhibitor KN93 in Aβ 25–35 -exposed rat organotypic hippocampal slice cultures (OHSCs, ex vivo model) and the mouse brain in vivo . The results showed that Aβ 25–35 induced intracellular Ca 2+ elevation, CaMKII hyperactivation, and marked accumulation of LC3-II and p62. Ultrastructural and biochemical analyses revealed impaired lysosomal maturation, defective autophagosome–lysosome coupling, and accumulation of autophagic vacuoles, consistent with a blockade of late-stage autophagic flux. Increased levels of immature cathepsin D and reduced colocalization of LC3 with lysosomal markers further supported compromised lysosomal competence. Damaged mitochondria were recruited to lysosomal compartments but failed to undergo effective degradation, indicating abortive mitophagy under Aβ 25–35 exposure. KN93 attenuated Aβ 25–35 -induced defects in lysosomal protease maturation, autophagosome–lysosome fusion, and mitochondrial clearance in both the ex vivo OHSCs model and the in vivo mouse brain. KN93 also ameliorated cognitive impairment in Aβ 25–35 -exposed mice. Taken together, these findings indicate that CaMKII hyperactivation contributes to Aβ 25–35 -induced autophagy–lysosomal dysfunction and neuronal damage, and that pharmacological inhibition of CaMKII with KN93 restores intracellular degradative capacity and ameliorates cognitive impairment under Aβ stress.

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Journal
Neurochemistry International
Published
2026-09-01
DOI
https://doi.org/10.1016/j.neuint.2026.106252
Primary Topic
Autophagy in Disease and Therapy
Type
article
Field-Weighted Citation Impact
0.00

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article

Aβ-induced CaMKII hyperactivation is associated with impaired lysosomal maturation and mitophagy

Yul A. Kim, Eun‐Mi Park, Eun Cheng Suh, Kyung Eun Lee
Neurochemistry International
Autophagy in Disease and Therapy
article

Aβ-induced CaMKII hyperactivation is associated with impaired lysosomal maturation and mitophagy

Yul A. Kim, Eun‐Mi Park, Eun Cheng Suh, Kyung Eun Lee
article en

Abstract

Alzheimer’s disease (AD) is characterized by amyloid-β (Aβ)-associated synaptic failure, intracellular Ca 2+ dysregulation, and progressive impairment of lysosome-dependent clearance pathways. Aβ induces sustained Ca 2+ overload, resulting in pathological hyperactivation of CaMKII, which normally participates in the regulation of autophagy. However, whether CaMKII hyperactivation contributes to Aβ-induced late-stage autophagy–lysosomal dysfunction and mitophagy failure remains unclear. This study aimed to examine the effects of the CaMKII inhibitor KN93 in Aβ 25–35 -exposed rat organotypic hippocampal slice cultures (OHSCs, ex vivo model) and the mouse brain in vivo . The results showed that Aβ 25–35 induced intracellular Ca 2+ elevation, CaMKII hyperactivation, and marked accumulation of LC3-II and p62. Ultrastructural and biochemical analyses revealed impaired lysosomal maturation, defective autophagosome–lysosome coupling, and accumulation of autophagic vacuoles, consistent with a blockade of late-stage autophagic flux. Increased levels of immature cathepsin D and reduced colocalization of LC3 with lysosomal markers further supported compromised lysosomal competence. Damaged mitochondria were recruited to lysosomal compartments but failed to undergo effective degradation, indicating abortive mitophagy under Aβ 25–35 exposure. KN93 attenuated Aβ 25–35 -induced defects in lysosomal protease maturation, autophagosome–lysosome fusion, and mitochondrial clearance in both the ex vivo OHSCs model and the in vivo mouse brain. KN93 also ameliorated cognitive impairment in Aβ 25–35 -exposed mice. Taken together, these findings indicate that CaMKII hyperactivation contributes to Aβ 25–35 -induced autophagy–lysosomal dysfunction and neuronal damage, and that pharmacological inhibition of CaMKII with KN93 restores intracellular degradative capacity and ameliorates cognitive impairment under Aβ stress.

Neurochemistry InternationalVol. 200
Ewha Womans University (KR)
Ewha Womans University
Good health and well-being
Openalex Percentile: Top 10%
Autophagy in Disease and Therapy
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