Knockout of Perilipin-2 in Microglia Alters Lipid Droplet Accumulation and Response to Alzheimer's Disease Stimuli.

Cells 2025
Open on PubMed

Lipid droplets (LDs) are emerging as key regulators of metabolism and inflammation, with their buildup in microglia linked to aging and neurodegeneration. Perilipin-2 (Plin2) is a ubiquitously expressed LD-associated protein that stabilizes lipid stores; in peripheral tissues, its upregulation promotes lipid retention, inflammation, and metabolic dysfunction. Yet, its role in microglia remains unclear. Using CRISPR-engineered Plin2 knockout (KO) BV2 microglia, we examined how Plin2 contributes to lipid accumulation, bioenergetics, and immune function. Compared to wild-type (WT) cells, Plin2 KO microglia showed markedly reduced LD burden under basal and oleic acid-loaded conditions. Functionally, this was linked to enhanced phagocytosis of zymosan particles, even after lipid loading, indicating improved clearance capacity. Transcriptomics revealed genotype-specific responses to amyloid-β (Aβ), especially in mitochondrial metabolism pathways. Seahorse assays confirmed a distinct bioenergetic profile in KO cells, with reduced basal respiration and glycolysis but preserved mitochondrial capacity, increased spare reserve, and a blunted glycolytic response to Aβ. Together, these findings establish Plin2 as a regulator of microglial lipid storage and metabolic state, with its loss reducing lipid buildup, enhancing phagocytosis, and altering Aβ-induced metabolic reprogramming. Targeting Plin2 may represent a strategy to reprogram microglial metabolism and function in aging and neurodegeneration.

7 Figures Extracted
Figure 1
Figure 1 PMC
Plin2 knockout reduces oleic acid–induced lipid droplet accumulation in BV2 microglia. ( a ) Immunofluorescent staining of E4-5xFAD (APOE4-TR E4/E4; 5...
Figure 2
Figure 2 PMC
Oleic acid–dependent enhancement of zymosan uptake in Plin2-deficient microglia. BV2 cells (WT and Plin2 KO) were exposed for 24 h to vehicle or 250 µ...
Figure 3
Figure 3 PMC
Plin2 deletion reprograms microglial transcriptomes across stimuli. ( a ) Principal component analysis (PCA) of bulk RNA-seq from WT and Plin2 KO BV2 ...
Figure 4
Figure 4 PMC
WGCNA of BV2 transcriptomes anchored to Plin2 KO. ( a ) WGCNA network built from variance-stabilized RNA-seq counts across all samples and treatments;...
Figure 5
Figure 5 PMC
Plin2 loss alters lipid droplet accumulation and dynamics. ( a ) Experimental workflow. BV2 cells were exposed to oleic acid (OA) or amyloid beta (Aβ)...
Figure 6
Figure 6 PMC
Plin2 deletion reshapes microglial bioenergetics. ( a ) Oxygen consumption rate (OCR) traces for WT and Plin2 KO BV2 cells under control or amyloid be...
Figure 7
Figure 7 PMC
Targeted lipidomics reveals Plin2-dependent routing of neutral lipids. ( a ) Principal component analysis of lipid profiles from WT and Plin2 KO BV2 c...