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神经元衍生信号脂质的内溶酶体加工调节星形胶质细胞中的自噬和脂滴降解。

Endolysosomal processing of neuron-derived signaling lipids regulates autophagy and lipid droplet degradation in astrocytes.

作者信息

Bhupana Jagannatham Naidu, Pabon Angelid, Leung Ho Hang, Rajmohamed Mohamed Asik, Kim Sang Hoon, Tong Yan, Jang Mi-Hyeon, Wong Ching-On

机构信息

Department of Biological Sciences, School of Arts and Sciences-Newark, Rutgers University, Newark, NJ, USA.

Department of Neurosurgery, Robert Wood Johnson Medical School, Rutgers University, New Brunswick, NJ, USA.

出版信息

Nat Commun. 2025 May 31;16(1):5073. doi: 10.1038/s41467-025-60402-3.

Abstract

Dynamic regulation of metabolic activities in astrocytes is critical to meeting the demands of other brain cells. During neuronal stress, lipids are transferred from neurons to astrocytes, where they are stored in lipid droplets (LDs). However, it is not clear whether and how neuron-derived lipids trigger metabolic adaptation in astrocytes. Here, we uncover an endolysosomal function that mediates neuron-astrocyte transcellular lipid signaling. We identify Tweety homolog 1 (TTYH1) as an astrocyte-enriched endolysosomal protein that facilitates autophagic flux and LD degradation. Astrocyte-specific deletion of mouse Ttyh1 and loss of its Drosophila ortholog lead to brain accumulation of neutral lipids. Computational and experimental evidence suggests that TTYH1 mediates endolysosomal clearance of ceramide 1-phosphate (C1P), a sphingolipid that dampens autophagic flux and LD breakdown in mouse and human astrocytes. Furthermore, neuronal C1P secretion induced by inflammatory cytokine interleukin-1β causes TTYH1-dependent autophagic flux and LD adaptations in astrocytes. These findings reveal a neuron-initiated signaling paradigm that culminates in the regulation of catabolic activities in astrocytes.

摘要

星形胶质细胞代谢活动的动态调节对于满足其他脑细胞的需求至关重要。在神经元应激期间,脂质从神经元转移到星形胶质细胞,并储存在脂滴(LDs)中。然而,尚不清楚神经元衍生的脂质是否以及如何触发星形胶质细胞的代谢适应。在这里,我们发现了一种介导神经元-星形胶质细胞跨细胞脂质信号传导的内溶酶体功能。我们确定Tweety同源物1(TTYH1)是一种在星形胶质细胞中富集的内溶酶体蛋白,它促进自噬通量和脂滴降解。小鼠Ttyh1的星形胶质细胞特异性缺失及其果蝇直系同源物的缺失导致脑中中性脂质的积累。计算和实验证据表明,TTYH1介导1-磷酸神经酰胺(C1P)的内溶酶体清除,C1P是一种鞘脂,可抑制小鼠和人类星形胶质细胞中的自噬通量和脂滴分解。此外,炎症细胞因子白细胞介素-1β诱导的神经元C1P分泌导致星形胶质细胞中TTYH1依赖性自噬通量和脂滴适应。这些发现揭示了一种由神经元启动的信号传导模式,最终导致对星形胶质细胞分解代谢活动的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c46/12126518/6afbc3009806/41467_2025_60402_Fig1_HTML.jpg

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