4.7 Article

AQP4-A25Q Point Mutation in Mice Depolymerizes Orthogonal Arrays of Particles and Decreases Polarized Expression of AQP4 Protein in Astrocytic Endfeet at the Blood-Brain Barrier

Journal

JOURNAL OF NEUROSCIENCE
Volume 42, Issue 43, Pages 8169-8183

Publisher

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.0401-22.2022

Keywords

astrocyte; BBB; brain edema; MCAO; R; neuronal injury; water intoxication

Categories

Funding

  1. Liaoning Revitalization Talents Program
  2. Liaoning Provincial Key RD Program
  3. National Natural Sciences Foundation of China
  4. Natural Science Foundation of Liaoning Province
  5. [XLYC1902044]
  6. [XLYC1808031]
  7. [2019020048-JH2/103]
  8. [81571061]
  9. [U1908208]
  10. [81671111]
  11. [2021-MS-280]

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This study developed a mouse model with depolymerized orthogonal arrays of particles (OAPs) to investigate the importance of OAP formation in Aquaporin-4 (AQP4). The results showed that the OAP structure of AQP4 plays a key role in its polarized expression in astrocytic endfeet processes at the blood-brain barrier. Manipulating the OAP formation of AQP4 may provide a new intervention strategy for cerebral cellular edema caused by stroke and traumatic brain injury.
Aquaporin-4 (AQP4) is characterized by the formation of orthogonal arrays of particles (OAPs) comprising its M1 and M23 isoforms in the plasma membrane. However, the biological importance of OAP formation is obscure. Here, we developed an OAP depolymerization male mouse model by transgenic knock-in of an AQP4-A25Q mutation. Analyses of the mutant brain tissue using blue native polyacrylamide gel electrophoresis, super-resolution imaging, and immunogold electron microscopy revealed remarkably reduced OAP structures and glial endfeet localization of the AQP4-A25Q mutant protein without effects on its overall mRNA and protein expression. AQP4A25Q/A25Q mice showed better survival and neurologic deficit scores when cerebral edema was induced by water intoxication or mid-dle cerebral artery occlusion/reperfusion. The brain water content and swelling of pericapillary astrocytic endfeet processes in AQP4A25Q/A25Q mice were significantly reduced, functionally supporting decreased AQP4 protein expres-sion at the blood-brain barrier. The infarct volume and neuronal damage were also reduced in AQP4A25Q/A25Q mice in the middle cerebral artery occlusion/reperfusion model. Astrocyte activation in the brain was alleviated in AQP4A25Q/A25Q mice, which may be associated with decreased cell swelling. We conclude that the OAP structure of AQP4 plays a key role in its polarized expression in astrocytic endfeet processes at the blood-brain barrier. Therefore, our study provided new insights into intervention of cerebral cellular edema caused by stroke and trau-matic brain injury through regulating AQP4 OAP formation.

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