跨细胞
血脑屏障
生物
内吞作用
细胞生物学
癌症研究
受体
内分泌学
生物化学
中枢神经系统
作者
Zhen Zhao,Abhay P. Sagare,Qingyi Ma,Matthew R. Halliday,Pan Kong,Kassandra Kisler,Ethan A. Winkler,Anita Ramanathan,Takahisa Kanekiyo,Guojun Bu,Nelly Chuqui Owens,Sanket Rege,Gabriel Si,Ashim Ahuja,Donghui Zhu,Carol A. Miller,Julie A. Schneider,Masako Maeda,Takahiro Maeda,Tohru Sugawara,Justin K. Ichida,Berislav V. Zlokovic
摘要
PICALM is a highly validated genetic risk factor for Alzheimer's disease (AD). We found that reduced expression of PICALM in AD and murine brain endothelium correlated with amyloid-β (Aβ) pathology and cognitive impairment. Moreover, Picalm deficiency diminished Aβ clearance across the murine blood-brain barrier (BBB) and accelerated Aβ pathology in a manner that was reversible by endothelial PICALM re-expression. Using human brain endothelial monolayers, we found that PICALM regulated PICALM/clathrin-dependent internalization of Aβ bound to the low density lipoprotein receptor related protein-1, a key Aβ clearance receptor, and guided Aβ trafficking to Rab5 and Rab11, leading to Aβ endothelial transcytosis and clearance. PICALM levels and Aβ clearance were reduced in AD-derived endothelial monolayers, which was reversible by adenoviral-mediated PICALM transfer. Inducible pluripotent stem cell-derived human endothelial cells carrying the rs3851179 protective allele exhibited higher PICALM levels and enhanced Aβ clearance. Thus, PICALM regulates Aβ BBB transcytosis and clearance, which has implications for Aβ brain homeostasis and clearance therapy.
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