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脑内皮细胞 PTEN/AKT/NEDD4-2/MFSD2A 轴调控血脑屏障通透性。

Brain endothelial PTEN/AKT/NEDD4-2/MFSD2A axis regulates blood-brain barrier permeability.

机构信息

State Key Laboratory of Proteomics, Beijing Proteome Research Center, National Center for Protein Sciences (Beijing), Beijing Institute of Lifeomics, Beijing 102206, China.

State Key Laboratory of Proteomics, Beijing Proteome Research Center, National Center for Protein Sciences (Beijing), Beijing Institute of Lifeomics, Beijing 102206, China; Department of Immunology, College of Basic Medicine, Qingdao University, Qingdao, Shandong 266071, China.

出版信息

Cell Rep. 2021 Jul 6;36(1):109327. doi: 10.1016/j.celrep.2021.109327.

Abstract

The low level of transcytosis is a unique feature of cerebrovascular endothelial cells (ECs), ensuring restrictive blood-brain barrier (BBB) permeability. Major facilitator superfamily domain-containing 2a (MFSD2A) is a key regulator of the BBB function by suppressing caveolae-mediated transcytosis. However, the mechanisms regulating MFSD2A at the BBB have been barely explored. Here, we show that cerebrovascular EC-specific deletion of Pten (phosphatase and tensin homolog) results in a dramatic increase in vesicular transcytosis by the reduction of MFSD2A, leading to increased transcellular permeability of the BBB. Mechanistically, AKT signaling inhibits E3 ubiquitin ligase NEDD4-2-mediated MFSD2A degradation. Consistently, cerebrovascular Nedd4-2 overexpression decreases MFSD2A levels, increases transcytosis, and impairs BBB permeability, recapitulating the phenotypes of Pten-deficient mice. Furthermore, Akt deletion decreases phosphorylated NEDD4-2 levels, restores MFSD2A levels, and normalizes BBB permeability in Pten-mutant mice. Altogether, our work reveals the essential physiological function of the PTEN/AKT/NEDD4-2/MFSD2A axis in the regulation of BBB permeability.

摘要

低水平的转胞吞作用是脑血管内皮细胞(ECs)的独特特征,可确保血脑屏障(BBB)的通透性受到限制。主要易化因子超家族结构域包含蛋白 2a(MFSD2A)通过抑制小窝介导的转胞吞作用来调节 BBB 功能,是关键调节因子。然而,调节 BBB 中 MFSD2A 的机制几乎没有被探索过。在这里,我们发现脑血管内皮细胞特异性敲除 Pten(磷酸酶和张力蛋白同源物)会导致 MFSD2A 的减少,从而使囊泡转胞吞作用显著增加,导致 BBB 的细胞间通透性增加。从机制上讲,AKT 信号抑制 E3 泛素连接酶 NEDD4-2 介导的 MFSD2A 降解。一致地,脑血管中 Nedd4-2 的过表达会降低 MFSD2A 水平,增加转胞吞作用,并损害 BBB 的通透性,从而模拟 Pten 缺陷型小鼠的表型。此外,Akt 缺失会降低磷酸化 NEDD4-2 水平,恢复 MFSD2A 水平,并使 Pten 突变型小鼠的 BBB 通透性正常化。总之,我们的工作揭示了 PTEN/AKT/NEDD4-2/MFSD2A 轴在调节 BBB 通透性方面的重要生理功能。

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