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Publication : Disease-associated mutations in Niemann-Pick type C1 alter ER calcium signaling and neuronal plasticity.

First Author  Tiscione SA Year  2019
Journal  J Cell Biol Volume  218
Issue  12 Pages  4141-4156
PubMed ID  31601621 Mgi Jnum  J:282225
Mgi Id  MGI:6379938 Doi  10.1083/jcb.201903018
Citation  Tiscione SA, et al. (2019) Disease-associated mutations in Niemann-Pick type C1 alter ER calcium signaling and neuronal plasticity. J Cell Biol 218(12):4141-4156
abstractText  Niemann-Pick type C1 (NPC1) protein is essential for the transport of externally derived cholesterol from lysosomes to other organelles. Deficiency of NPC1 underlies the progressive NPC1 neurodegenerative disorder. Currently, there are no curative therapies for this fatal disease. Given the Ca(2+) hypothesis of neurodegeneration, which posits that altered Ca(2+) dynamics contribute to neuropathology, we tested if disease mutations in NPC1 alter Ca(2+) signaling and neuronal plasticity. We determine that NPC1 inhibition or disease mutations potentiate store-operated Ca(2+) entry (SOCE) due to a presenilin 1 (PSEN1)-dependent reduction in ER Ca(2+) levels alongside elevated expression of the molecular SOCE components ORAI1 and STIM1. Associated with this dysfunctional Ca(2+) signaling is destabilization of neuronal dendritic spines. Knockdown of PSEN1 or inhibition of the SREBP pathway restores Ca(2+) homeostasis, corrects differential protein expression, reduces cholesterol accumulation, and rescues spine density. These findings highlight lysosomes as a crucial signaling platform responsible for tuning ER Ca(2+) signaling, SOCE, and synaptic architecture in health and disease.
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