Dendrite Morphogenesis and Plasticity Unit, National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD, USA.
Department of Neurosciences, University of California, San Diego, San Diego, CA, USA.
Nat Commun. 2021 Apr 23;12(1):2408. doi: 10.1038/s41467-021-22751-7.
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.
神经元和神经胶质细胞之间的脂质交换有助于神经系统的发育、功能和应激反应。为了了解神经元如何从特定的脂蛋白及其受体获得脂质供应,我们在发育中的果蝇幼虫大脑中进行了联合遗传、转录组和生化分析。在这里,我们报告了星形胶质细胞衍生的分泌型脂联素 Glial Lazarillo (GLaz),它是人类载脂蛋白 D (APOD)的同源物,以及其神经元受体果蝇脂蛋白受体 1 (LpR1-short)的脑特异性短同工型,共同介导神经元-神经胶质细胞的脂质交换,并支持树突形态发生。LpR1 的同工型特异性决定了其分布、结合伙伴以及支持适当树突生长和突触连接的能力。通过证明 GLaz/APOD 和 LpR1 之间的物理和功能相互作用,我们阐明了介导果蝇大脑中脂质转运的分子途径,并提供了体内证据,表明脂蛋白受体的同工型特异性表达是调节细胞类型特异性脂质募集的关键机制。