4.3 Article

Characterisation and metabolism of astroglia-rich primary cultures from cathepsin K-deficient mice

Journal

BIOLOGICAL CHEMISTRY
Volume 393, Issue 9, Pages 959-970

Publisher

WALTER DE GRUYTER GMBH
DOI: 10.1515/hsz-2012-0145

Keywords

astrocytes; cysteine cathepsins; energy metabolism; glutathione metabolism; oligodendrocytes

Funding

  1. Jacobs University Bremen [2140/90033, 2140/90140]
  2. Volkswagen Foundation
  3. School of Engineering and Science, Jacobs University Bremen

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Cathepsin K is important for the brain, because its deficiency in mice is associated with a marked decrease in differentiated astrocytes and changes in neuronal patterning in the hippocampus as well as with learning and memory deficits. As cathepsin K activity is most prominent in hippocampal regions of wild type animals, we hypothesised alterations in astrocyte-mediated support of neurons as a potential mechanism underlying the impaired brain functions in cathepsin K-deficient mice. To address this hypothesis, we have generated and characterised astroglia-rich primary cell cultures from cathepsin K-deficient and wild type mice and compared these cultures for possible changes in metabolic support functions and cell composition. Interestingly, cells expressing the oligodendrocytic markers myelin-associated glycoprotein and myelin basic protein were more frequent in astroglia-rich cultures from cathepsin K-deficient mice. However, cell cultures from both genotypes were morphologically comparable and similar with respect to glucose metabolism. In addition, specific glutathione content, glutathione export and gamma-glutamyl-transpeptidase activity remained unchanged, whereas the specific activities of glutathione reductase and glutathione-S-transferase were increased by around 50% in cathepsin K-deficient cultures. Thus, lack of cathepsin K in astroglia-rich cultures appears not to affect metabolic supply functions of astrocytes but to facilitate the maturation of oligodendrocytes.

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