Myeloid cell–specific loss of NPC1 in mice recapitulates microgliosis and neurodegeneration in patients with Niemann-Pick type C disease

NPC1 小胶质细胞 神经退行性变 尼曼-皮克病,C型 转运蛋白 星形胶质增生 内体 病理 溶酶体贮存病 生物 医学 免疫学 神经科学 细胞生物学 疾病 炎症 中枢神经系统 细胞内
作者
Lina Dinkel,Selina Hummel,Valerio Zenatti,Mariagiovanna Malara,Yannik Tillmann,Alessio Colombo,Laura Sebastián Monasor,Jung H. Suh,T. Daniel Logan,Stefan Roth,Lars Paeger,Patricia Hoffelner,Oliver Bludau,Andree Schmidt,Stephan A. Müller,Martina Schifferer,Brigitte Nuscher,Jasenka Rudan Njavro,Matthias Prestel,Laura M. Bartos
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:16 (776): eadl4616-eadl4616 被引量:21
标识
DOI:10.1126/scitranslmed.adl4616
摘要

Niemann-Pick type C (NPC) disease is an inherited lysosomal storage disorder mainly driven by mutations in the NPC1 gene, causing lipid accumulation within late endosomes/lysosomes and resulting in progressive neurodegeneration. Although microglial activation precedes neuronal loss, it remains elusive whether loss of the membrane protein NPC1 in microglia actively contributes to NPC pathology. In a mouse model with depletion of NPC1 in myeloid cells, we report severe alterations in microglial lipidomic profiles, including the enrichment of bis(monoacylglycero)phosphate, increased cholesterol, and a decrease in cholesteryl esters. Lipid dyshomeostasis was associated with microglial hyperactivity, marked by an increase in translocator protein 18 kDa (TSPO). These hyperactive microglia initiated a pathological cascade resembling NPC-like phenotypes, including a shortened life span, motor impairments, astrogliosis, neuroaxonal pathology, and increased neurofilament light chain (NF-L), a neuronal injury biomarker. As observed in the mouse model, patients with NPC showed increased NF-L in the blood and microglial hyperactivity, as visualized by TSPO-PET imaging. Reduced TSPO expression in blood-derived macrophages of patients with NPC was measured after N -acetyl- l -leucine treatment, which has been recently shown to have beneficial effects in patients with NPC, suggesting that TSPO is a potential marker to monitor therapeutic interventions for NPC. Conclusively, these results demonstrate that myeloid dysfunction, driven by the loss of NPC1, contributes to NPC disease and should be further investigated for therapeutic targeting and disease monitoring.
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