生物
细胞生物学
斑马鱼
免疫系统
脊椎动物
转录因子
淋巴系统
电池类型
食腐动物
内皮干细胞
淋巴管内皮
谱系(遗传)
细胞
清道夫受体
小胶质细胞
调节器
中枢神经系统
再生(生物学)
干细胞
前体细胞
功能(生物学)
发育生物学
神经科学
细胞谱系
细胞分化
内皮
壁细胞
自由基清除剂
细胞命运测定
免疫学
表型
细胞生长
器官发生
抄写(语言学)
神经干细胞
细胞培养
T细胞
转录调控
收敛演化
神经系统
作者
Andrea U. Gaudi,Michelle Meier,Oguzhan Baltaci,Sayali Chowdhary,Frank J. Tulenko,Stefanie Dudczig,Sebastian-Alexander Stamatis,Scott Paterson,Hujun Yu,Maria Cristina Rondon Galeano,Elizabeth Mason,Lee B. Miles,Robert J. Bryson‐Richardson,Andrew J. Pask,Jana Vukovic,Anne K. Lagendijk,K. A. Smith,Jan Kaslin,Michael R.M. Harrison,Peter D. Currie
出处
期刊:Nature
[Nature Portfolio]
日期:2026-01-21
标识
DOI:10.1038/s41586-025-10003-3
摘要
The vertebrate central nervous system is protected by the blood-brain barrier and meningeal membranes, which ensure immune privilege1. In the mammalian brain, microglia and barrier-associated or border-associated macrophages (BAMs) provide immune surveillance and scavenge wastes2, yet how evolution shaped immune-cell diversity and function is not understood. In zebrafish, a vascular-derived mural lymphatic endothelial cell (muLEC) lineage fulfils scavenger cell functions at central nervous system borders3-5. Here we identify the transcription factor odd-skipped related 2 (osr2) as a specific marker and regulator of muLEC differentiation and maintenance. osr2 controls the transition of muLECs from interconnected endothelial cells to individual scavenger cells in part by means of control of cadherin-6. muLECs are more transcriptionally similar to BAMs than to other mammalian meningeal cells and share several functions in tissue homeostasis. However, BAMs are absent from zebrafish and muLECs from mice and humans. Analysis of osr2, lymphatic endothelial cell (LEC) and BAM markers in diverse vertebrate species reveals muLECs as an ancient lineage and BAMs a recent mammalian specialization. muLECs and BAMs share functional analogies but are not homologous, providing an example of convergent evolution. This highlights the physiological importance of meningeal scavenger cells and the developmental plasticity of LECs in generating specialized cell types throughout evolution.
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