Deletion of calcineurin from GFAP-expressing astrocytes impairs excitability of cerebellar and hippocampal neurons through astroglial Na+/K+ ATPase

التفاصيل البيبلوغرافية
العنوان: Deletion of calcineurin from GFAP-expressing astrocytes impairs excitability of cerebellar and hippocampal neurons through astroglial Na+/K+ ATPase
المؤلفون: Simone Ummarino, Armando A. Genazzani, Egidio D'Angelo, Annalisa Di Ruscio, Teresa Soda, Dmitry Lim, Federico Alessandro Ruffinatti, Valeria Bortolotto, Alessio Stevano, Marianna Dionisi, Heather Bondi, Lisa Mapelli, Mariagrazia Grilli, Carla Distasi, Francesco Moccia, Laura Tapella, Giulia Dematteis
سنة النشر: 2020
مصطلحات موضوعية: 0301 basic medicine, Nervous system, Cerebellum, Cells, Knockout, Hippocampal formation, Hippocampus, Ouabain, 03 medical and health sciences, Cellular and Molecular Neuroscience, Mice, 0302 clinical medicine, Conditional gene knockout, Glial Fibrillary Acidic Protein, medicine, Animals, Gliosis, Na+/K+-ATPase, Cells, Cultured, Neuroinflammation, Mice, Knockout, Neurons, Cultured, Glial fibrillary acidic protein, biology, Chemistry, Calcineurin, Neurogenesis, Astrocytes, Sodium-Potassium-Exchanging ATPase, Cell biology, 030104 developmental biology, medicine.anatomical_structure, Neurology, nervous system, biology.protein, medicine.symptom, 030217 neurology & neurosurgery, medicine.drug
الوصف: Astrocytes perform important housekeeping functions in the nervous system including maintenance of adequate neuronal excitability, although the regulatory mechanisms are currently poorly understood. The astrocytic Ca2+/calmodulin-activated phosphatase calcineurin (CaN) is implicated in the development of reactive gliosis and neuroinflammation, but its roles, including the control of neuronal excitability, in healthy brain is unknown. We have generated a mouse line with conditional knockout (KO) of CaN B1 (CaNB1) in glial fibrillary acidic protein (GFAP)-expressing astrocytes (astroglialcalcineurinknock-out, ACN-KO). Here we report that postnatal and astrocyte-specific ablation of CaNB1 did not alter normal growth and development as well as adult neurogenesis. Yet, we found that specific deletion of astrocytic CaN selectively impairs intrinsic neuronal excitability in hippocampal CA1 pyramidal neurons and cerebellar granule cells (CGCs). This impairment was associated with a decrease in after-hyperpolarization in CGC, while passive properties were unchanged, suggesting impairment of K+homeostasis. Indeed, blockade of Na+/K+-ATPase (NKA) with ouabain phenocopied the electrophysiological alterations observed in ACN-KO CGCs. In addition, NKA activity was significantly lower in cerebellar and hippocampal lysates and in pure astrocytic cultures from ACN-KO mice. While no changes were found in protein levels, NKA activity was inhibited by the specific CaN inhibitor FK506 in both cerebellar lysates and primary astroglia from control mice, suggesting that CaN directly modulates NKA activity and in this manner controls neuronal excitability. In summary, our data provide formal evidence for the notion that astroglia is fundamental for controlling basic neuronal functions and place CaN center-stage as an astrocytic Ca2+-sensitive switch.
اللغة: English
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::85f4e7c38dfac8bc5395871dffcbfa33
http://hdl.handle.net/2318/1784703
Rights: OPEN
رقم الانضمام: edsair.doi.dedup.....85f4e7c38dfac8bc5395871dffcbfa33
قاعدة البيانات: OpenAIRE