Brain-specific lipoprotein receptors interact with astrocyte derived apolipoprotein and mediate neuron-glia lipid shuttling

脑特异性脂蛋白受体与星形胶质细胞衍生的载脂蛋白相互作用并介导神经元-胶质细胞脂质穿梭

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作者:Jun Yin, Emma Spillman, Ethan S Cheng, Jacob Short, Yang Chen, Jingce Lei, Mary Gibbs, Justin S Rosenthal, Chengyu Sheng, Yuki X Chen, Kelly Veerasammy, Tenzin Choetso, Rinat Abzalimov, Bei Wang, Chun Han, Ye He, Quan Yuan

Abstract

Lipid shuttling between neurons and glia contributes to the development, function, and stress responses of the nervous system. To understand how a neuron acquires its lipid supply from specific lipoproteins and their receptors, we perform combined genetic, transcriptome, and biochemical analyses in the developing Drosophila larval brain. Here we report, the astrocyte-derived secreted lipocalin Glial Lazarillo (GLaz), a homolog of human Apolipoprotein D (APOD), and its neuronal receptor, the brain-specific short isoforms of Drosophila lipophorin receptor 1 (LpR1-short), cooperatively mediate neuron-glia lipid shuttling and support dendrite morphogenesis. The isoform specificity of LpR1 defines its distribution, binding partners, and ability to support proper dendrite growth and synaptic connectivity. By demonstrating physical and functional interactions between GLaz/APOD and LpR1, we elucidate molecular pathways mediating lipid trafficking in the fly brain, and provide in vivo evidence indicating isoform-specific expression of lipoprotein receptors as a key mechanism for regulating cell-type specific lipid recruitment.

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