细胞生物学
小窝
跨细胞
CXCL10型
CXCR3型
外渗
内皮干细胞
神经炎症
生物
血脑屏障
趋化因子
免疫学
趋化因子受体
神经科学
信号转导
中枢神经系统
免疫系统
体外
炎症
生物化学
作者
Troy N. Trevino,Ali A. Almousawi,Andrea Ochoa-Raya,Kait Zemanski,Suellen D. Oliveira,Felecia M. Marottoli,Leon M. Tai,Richard D. Minshall,Sarah E. Lutz
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2022-11-16
标识
DOI:10.1101/2022.11.15.516689
摘要
Abstract CXCL10 is an interferon-inducible chemokine that can recruit CXCR3 + leukocytes to the central nervous system, leading to neuroinflammation, demyelination, and neuronal losses. How CXCL10 promotes leukocyte extravasation and diapedesis across the blood-brain barrier – formed by brain endothelial cells – is poorly understood. Here, we report that CXCL10 mediates CD4+ T cell migration through the brain endothelial cell cytoplasm (transcellular), but not cell-cell junctions (paracellular), via the vesicular trafficking protein Caveolin-1. Caveolin-1 promotes CXCL10 aggregation into cytoplasmic stores in brain endothelial cells in vitro to provide the local, high concentration necessary for recruitment of CXCR3+ leukocytes. This process also requires LFA-1 activity. In the absence of Caveolin-1, endothelial CXCL10 is secreted, and the local signaling cues are lost. Consistent with our in vitro data, genetic ablation of Caveolin-1 in endothelial cells reduces the severity of active experimental autoimmune encephalomyelitis (EAE), a murine model for multiple sclerosis, by decreasing the infiltration of CXCR3+ T cells into the CNS. Moreover, loss of Caveolin-1 protects against the adoptive transfer of autoreactive T cells. Our findings establish a novel mechanism by which brain endothelial cells utilize Caveolin-1 dependent CXCL10 intracellular stores to license T cells for transcellular migration across the blood-brain barrier.
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