Literature DB >> 24464850

Astrocyte glycogenolysis is triggered by store-operated calcium entry and provides metabolic energy for cellular calcium homeostasis.

Margit S Müller1, Rebecca Fox, Arne Schousboe, Helle S Waagepetersen, Lasse K Bak.   

Abstract

Astrocytic glycogen, the only storage form of glucose in the brain, has been shown to play a fundamental role in supporting learning and memory, an effect achieved by providing metabolic support for neurons. We have examined the interplay between glycogenolysis and the bioenergetics of astrocytic Ca(2+) homeostasis, by analyzing interdependency of glycogen and store-operated Ca(2+) entry (SOCE), a mechanism in cellular signaling that maintains high endoplasmatic reticulum (ER) Ca(2+) concentration and thus provides the basis for store-dependent Ca(2+) signaling. We stimulated SOCE in primary cultures of murine cerebellar and cortical astrocytes, and determined glycogen content to investigate the effects of SOCE on glycogen metabolism. By blocking glycogenolysis, we tested energetic dependency of SOCE-related Ca(2+) dynamics on glycogenolytic ATP. Our results show that SOCE triggers astrocytic glycogenolysis. Upon inhibition of adenylate cyclase with 2',5'-dideoxyadenosine, glycogen content was no longer significantly different from that in unstimulated control cells, indicating that SOCE triggers astrocytic glycogenolysis in a cAMP-dependent manner. When glycogenolysis was inhibited in cortical astrocytes by 1,4-dideoxy-1,4-imino-D-arabinitol, the amount of Ca(2+) loaded into ER via sarco/endoplasmic reticulum Ca(2)-ATPase (SERCA) was reduced, which suggests that SERCA pumps preferentially metabolize glycogenolytic ATP. Our study demonstrates SOCE as a novel pathway in stimulating astrocytic glycogenolysis. We also provide first evidence for a new functional role of brain glycogen, in providing local ATP to SERCA, thus establishing the bioenergetic basis for astrocytic Ca(2+) signaling. This mechanism could offer a novel explanation for the impact of glycogen on learning and memory.
Copyright © 2014 Wiley Periodicals, Inc.

Entities:  

Keywords:  astrocyte; calcium; glycogen

Mesh:

Substances:

Year:  2014        PMID: 24464850     DOI: 10.1002/glia.22623

Source DB:  PubMed          Journal:  Glia        ISSN: 0894-1491            Impact factor:   7.452


  29 in total

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Review 6.  Astrocytic glycogen metabolism in the healthy and diseased brain.

Authors:  Lasse K Bak; Anne B Walls; Arne Schousboe; Helle S Waagepetersen
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Review 7.  The regulation of neuronal mitochondrial metabolism by calcium.

Authors:  I Llorente-Folch; C B Rueda; B Pardo; G Szabadkai; M R Duchen; J Satrustegui
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Review 8.  The dynamic life of the glycogen granule.

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Journal:  J Biol Chem       Date:  2018-02-26       Impact factor: 5.157

9.  Astrocyte Cultures Mimicking Brain Astrocytes in Gene Expression, Signaling, Metabolism and K+ Uptake and Showing Astrocytic Gene Expression Overlooked by Immunohistochemistry and In Situ Hybridization.

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Journal:  Neurochem Res       Date:  2016-01-28       Impact factor: 3.996

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