AI Article Synopsis

  • Recent studies show that Lurcher (Lc/+) Purkinje cells in culture exhibit similar survival and characteristics to those in living organisms, providing a useful model for neurodegeneration research.
  • Intracellular calcium levels are chronically elevated in Lc/+ Purkinje cells, affecting the distribution and concentration of protein kinase C gamma (PKCγ) as these cells degenerate.
  • Treatment with PKC, JNK, and p38 inhibitors enhances the survival of both normal and Lc/+ cells under certain conditions, indicating that different cell death pathways are activated due to cell culture stress, natural cell death processes, and the Lurcher mutation.

Article Abstract

Recent studies using both dissociated and organotypic cell cultures have shown that heterozygous Lurcher (Lc/+) Purkinje cells (PCs) grown in vitro share many of the same survival and morphological characteristics as Lc/+ PCs in vivo. We have used this established tissue culture system as a valuable model for studying cell death mechanisms in a relatively simple system where neurodegeneration is induced by a constitutive cation leak mediated by the Lurcher mutation in the δ2 glutamate receptor (GluRδ2). In this study, Ca(++) imaging and immunocytochemistry studies indicate that intracellular levels of Ca(++) are chronically increased in Lc/+ PCs and the concentration and/or distribution of the conventional PKCγ isoform is altered in degenerating Lc/+ PCs. To begin to characterize the molecular mechanisms that regulate Lc/+ PC death, the contributions of conventional PKC pathways and of two MAP kinase family members, JNK and p38, were examined in slice cultures from wild-type and Lc/+ mutant mouse cerebellum. Cerebellar slice cultures from P0 pups were treated with either a conventional PKC inhibitor, a JNK inhibitor, or a p38 inhibitor either from 0 to 14 or 7 to 14 DIV. Treatment with either of the three inhibitors from 0 DIV significantly increased wild type and Lc/+ PC survival through 14 DIV, but only Lc/+ PC survival was significantly increased following treatments from 7 to 14 DIV. The results suggest that multiple PC death pathways are induced by the physical trauma of making organotypic slice cultures, naturally-occurring postnatal cell death, and the GluRδ2 (Lc) mutation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3582878PMC
http://dx.doi.org/10.1007/s12311-012-0427-xDOI Listing

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