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Distinct Early Molecular Responses to Mutations Causing vLINCL and JNCL Presage ATP Synthase Subunit C Accumulation in Cerebellar Cells

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  • Yi Cao
  • John F Staropoli
  • Sunita Biswas
  • Janice A Espinola
  • Marcy E MacDonald
  • Jong-Min Lee
  • Susan L Cotman

Abstract

Variant late-infantile neuronal ceroid lipofuscinosis (vLINCL), caused by CLN6 mutation, and juvenile neuronal ceroid lipofuscinosis (JNCL), caused by CLN3 mutation, share clinical and pathological features, including lysosomal accumulation of mitochondrial ATP synthase subunit c, but the unrelated CLN6 and CLN3 genes may initiate disease via similar or distinct cellular processes. To gain insight into the NCL pathways, we established murine wild-type and CbCln6nclf/nclf cerebellar cells and compared them to wild-type and CbCln3Δex7/8/Δex7/8 cerebellar cells. CbCln6nclf/nclf cells and CbCln3Δex7/8/Δex7/8 cells both displayed abnormally elongated mitochondria and reduced cellular ATP levels and, as cells aged to confluence, exhibited accumulation of subunit c protein in Lamp 1-positive organelles. However, at sub-confluence, endoplasmic reticulum PDI immunostain was decreased only in CbCln6nclf/nclf cells, while fluid-phase endocytosis and LysoTracker® labeled vesicles were decreased in both CbCln6nclf/nclf and CbCln3Δex7/8/Δex7/8 cells, though only the latter cells exhibited abnormal vesicle subcellular distribution. Furthermore, unbiased gene expression analyses revealed only partial overlap in the cerebellar cell genes and pathways that were altered by the Cln3Δex7/8 and Cln6nclf mutations. Thus, these data support the hypothesis that CLN6 and CLN3 mutations trigger distinct processes that converge on a shared pathway, which is responsible for proper subunit c protein turnover and neuronal cell survival.

Suggested Citation

  • Yi Cao & John F Staropoli & Sunita Biswas & Janice A Espinola & Marcy E MacDonald & Jong-Min Lee & Susan L Cotman, 2011. "Distinct Early Molecular Responses to Mutations Causing vLINCL and JNCL Presage ATP Synthase Subunit C Accumulation in Cerebellar Cells," PLOS ONE, Public Library of Science, vol. 6(2), pages 1-14, February.
  • Handle: RePEc:plo:pone00:0017118
    DOI: 10.1371/journal.pone.0017118
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    1. Ekaterini Blaveri & Fiona Kelly & Alessandra Mallei & Kriss Harris & Adam Taylor & Juliet Reid & Maria Razzoli & Lucia Carboni & Chiara Piubelli & Laura Musazzi & Girogio Racagni & Aleksander Mathé & , 2010. "Expression Profiling of a Genetic Animal Model of Depression Reveals Novel Molecular Pathways Underlying Depressive-Like Behaviours," PLOS ONE, Public Library of Science, vol. 5(9), pages 1-10, September.
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