HIF prolyl hydroxylase 2/3 deletion disrupts astrocytic integrity and exacerbates neuroinflammation

Author:

Rosiewicz Kamil Sebastian1,Muinjonov Bakhrom1,Kunz Séverine2,Radbruch Helena3,Chen Jessy14,Jüttner René5,Kerkering Janis1,Ucar Julia1,Crowley Tadhg1,Wielockx Ben6,Paul Friedemann1,Alisch Marlen1,Siffrin Volker14ORCID

Affiliation:

1. Experimental and Clinical Research Center (ECRC) Charité—Universitätsmedizin Berlin und Max Delbrück Center or Molecular Medicine in the Helmholtz Association Berlin Germany

2. Technology Platform for Electron Microscopy Max Delbrück Centre for Molecular Medicine in the Helmholtz Association (MDC) Berlin Germany

3. Department of Neuropathology Charité—Universitätsmedizin Berlin. Berlin Germany

4. Department of Neurology Charité Universitätsmedizin Berlin. Berlin Germany

5. Neuromuscular and Cardiovascular Cell Biology Group Max‐Delbrück‐Center for Molecular Medicine Berlin Germany

6. Institute for Clinical Chemistry and Laboratory Medicine Technische Universität Dresden. Dresden Germany

Abstract

AbstractAstrocytes constitute the parenchymal border of the blood–brain barrier (BBB), modulate the exchange of soluble and cellular elements, and are essential for neuronal metabolic support. Thus, astrocytes critically influence neuronal network integrity. In hypoxia, astrocytes upregulate a transcriptional program that has been shown to boost neuroprotection in several models of neurological diseases. We investigated transgenic mice with astrocyte‐specific activation of the hypoxia‐response program by deleting the oxygen sensors, HIF prolyl‐hydroxylase domains 2 and 3 (Phd2/3). We induced astrocytic Phd2/3 deletion after onset of clinical signs in experimental autoimmune encephalomyelitis (EAE) that led to an exacerbation of the disease mediated by massive immune cell infiltration. We found that Phd2/3‐ko astrocytes, though expressing a neuroprotective signature, exhibited a gradual loss of gap‐junctional Connexin‐43 (Cx43), which was induced by vascular endothelial growth factor‐alpha (Vegf‐a) expression. These results provide mechanistic insights into astrocyte biology, their critical role in hypoxic states, and in chronic inflammatory CNS diseases.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

Cellular and Molecular Neuroscience,Neurology

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