Autophagy deficiency modulates microglial lipid homeostasis and aggravates tau pathology and spreading.

Xu, Yin; Propson, Nicholas E; Du, Shuqi; Xiong, Wen; Zheng, Hui · Proc Natl Acad Sci U S A · 2021

basic_science · Level V

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Abstract

The autophagy-lysosomal pathway plays a critical role in intracellular clearance and metabolic homeostasis. While neuronal autophagy is known to participate in the degradation of neurofibrillary tangles composed of hyperphosphorylated and misfolded tau protein in Alzheimer's disease and other tauopathies, how microglial-specific autophagy regulates microglial intrinsic properties and neuronal tau pathology is not well understood. We report here that Atg7, a key mediator of autophagosome biogenesis, plays an essential role in the regulation of microglial lipid metabolism and neuroinflammation. Microglia-specific deletion of <i>Atg7</i> leads to the transition of microglia to a proinflammatory status in vivo and to inflammasome activation in vitro. Activation of ApoE and lipid efflux attenuates the lipid droplets accumulation and inhibits cytokine production in microglial cells with <i>Atg7</i> deficiency. Functionally, we show that the absence of microglial <i>Atg7</i> enhances intraneuronal tau pathology and its spreading. Our results reveal an essential role for microglial autophagy in regulating lipid homeostasis, neuroinflammation, and tau pathology.

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