Mechanisms Underlying AQP4 Accumulation in Astrocyte Endfeet

被引:66
作者
Camassa, Laura Maria Azzurra [1 ]
Lunde, Lisa K. [1 ]
Hoddevik, Eystein H. [1 ]
Stensland, Maria [2 ]
Boldt, Henning B. [1 ]
De Souza, Gustavo A. [2 ]
Ottersen, Ole P. [1 ]
Amiry-Moghaddam, Mahmood [1 ]
机构
[1] Univ Oslo, Inst Basic Med Sci, Dept Mol Med, Oslo, Norway
[2] Univ Oslo, Dept Immunol, Lab Prote Res, Oslo, Norway
关键词
astroglia; agrin; aquaporin; extracellular matrix; polarization; compartmentalization; BLOOD-BRAIN-BARRIER; WATER CHANNEL PROTEIN; ORTHOGONAL ARRAYS; ENDOTHELIAL-CELLS; PLASMA-MEMBRANES; RAT-BRAIN; IMMUNOGOLD CYTOCHEMISTRY; NEUROMUSCULAR-JUNCTION; CULTURED ASTROCYTES; NULL MICE;
D O I
10.1002/glia.22878
中图分类号
Q189 [神经科学];
学科分类号
071006 [神经生物学];
摘要
The brain-blood interface holds the key to our understanding of how cerebral blood flow is regulated and how water and solutes are exchanged between blood and brain. The highly specialized astrocytic membranes that enwrap brain microvessels are salient constituents of the brain-blood interface. These endfoot membranes contain a distinct set of molecules that is anchored to the subendothelial basal lamina forming an endfoot-basal lamina junctional complex. Here we explore the mechanisms underpinning the formation of this complex. By use of a tailor made model system we show that endothelial cells promote AQP4 accumulation by exerting an inductive effect through extracellular matrix components such as agrin, as well as through a direct mechanical interaction with the endfoot processes. Through the compounds they secrete, the endothelial cells also increase AQP4 expression. The present data suggest that the highly specialized gliovascular interface is established through inductive processes that include both chemical and mechanical factors.
引用
收藏
页码:2073 / 2091
页数:19
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