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Published on: January 31, 2019
ATP11B Modulates Microglial Lipid Metabolism and Alleviates Alzheimer's Disease Pathology
Yuchen Zhang1,2, Shibo Zhang1, Xuyu Zhao1
1School of Life Sciences Shanghai University Shanghai China.
Abstract:
Abnormal lipid metabolism in microglia leads to the formation of pathological lipid droplets (LDs), a phenomenon also observed in neurodegenerative diseases such as Alzheimer's disease (AD). The abnormal accumulation of LDs disrupts normal cellular function and exacerbates the pathological process of AD. ATP11B is a P4-ATPase and the expression of Atp11b changes in the brain of patients with AD and diseases of lipid metabolism. The present study aimed to explore the regulatory role of ATP11B in microglial lipid metabolism and assess the potential of ATP11B as a therapeutic target for AD. Atp11b deficiency caused excessive fatty acid uptake and activated the PPAR signaling pathway, resulting in abnormal synthesis of neutral lipids and mitochondrial energy metabolism in microglia. Further results showed that Atp11b deficiency led to the accumulation of pathological LDs in microglia and AD mice. Conversely, overexpression of Atp11b alleviated exploratory behavior impairment, learning and memory impairment, LD accumulation, beta-amyloid (Aβ) deposition, and inflammatory response in the brain of AD mice. These findings provide important clues for a better understanding of the pathogenesis of AD and for developing novel therapeutic strategies.
Insights
Altering ATP11B levels impacts microglial lipid metabolism, affecting lipid droplet accumulation and Alzheimer's disease (AD) pathology. Restoring ATP11B function may offer a therapeutic strategy for AD by improving brain function and reducing disease markers.
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- Abnormal lipid metabolism in microglia, leading to pathological lipid droplet (LD) accumulation, is implicated in Alzheimer's disease (AD) pathogenesis.
- ATP11B, a P4-ATPase, exhibits altered expression in AD brains and lipid metabolism disorders.
Purpose of the Study:
- To investigate the role of ATP11B in regulating microglial lipid metabolism.
- To evaluate ATP11B as a potential therapeutic target for AD.
Main Methods:
- Studied the effects of Atp11b deficiency and overexpression in microglia and AD mouse models.
- Analyzed lipid metabolism, cellular function, and AD-related pathology.
Main Results:
- Atp11b deficiency resulted in excessive fatty acid uptake, PPAR pathway activation, abnormal lipid synthesis, and mitochondrial dysfunction in microglia.
- Lack of Atp11b led to pathological LD accumulation in microglia and AD mice.
- Overexpression of Atp11b ameliorated cognitive deficits, LD accumulation, beta-amyloid deposition, and neuroinflammation in AD mice.
Conclusions:
- ATP11B plays a critical role in regulating microglial lipid metabolism and mitigating AD pathology.
- Targeting ATP11B presents a promising therapeutic avenue for Alzheimer's disease.
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