再髓鞘化
胆固醇
小胶质细胞
共域化
化学
中枢神经系统
内科学
甾醇O-酰基转移酶
生物化学
内分泌学
胆固醇逆向转运
平衡
脱髓鞘病
脱髓鞘病
细胞生物学
神经胶质
多发性硬化
生物
甾醇
作者
Nishama De Silva Mohotti,Jenna M. Williams,Rashmi Binjawadagi,Hiroko Kobayashi,Disni Dedunupitiya,Jack M. Petersen,A. Denise R. Garcia,Meredith D. Hartley
标识
DOI:10.1021/acschemneuro.5c00703
摘要
Elevated cholesterol ester levels have been observed in the CNS of patients with neurological diseases; yet, the source of cholesterol ester accumulation and whether it is directly linked to demyelination remain undefined. This study investigates the temporal dynamics of cholesterol esters using the Plp1 -iCKO- Myrf mouse model, which features distinct phases of demyelination and remyelination. Our findings reveal that cholesterol ester levels increased with demyelination in both the brain and spinal cord. In the brain, cholesterol esters declined to normal levels during remyelination, whereas cholesterol esters remained elevated in the spinal cord, which had limited remyelination. Expression of acetyl-CoA-acyltransferase 1 (ACAT1) and lecithin-cholesterol acyltransferase (LCAT) were elevated during demyelination, implying the potential involvement of both proteins in the formation of cholesterol esters. Colocalization studies revealed that ACAT1 is predominantly expressed by microglia and LCAT is predominantly expressed by astrocytes during demyelination, highlighting the active roles of glial cells in cholesterol ester metabolism. In addition, we showed that administering the remyelinating drug, Sob-AM2, effectively reduced the level of cholesterol ester accumulation in the brain during demyelination, underscoring the potential that manipulating cholesterol ester regulatory pathways may offer for restoring cholesterol homeostasis and promoting remyelination in demyelinating diseases.
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