Conserved gene signatures shared among MAPT mutations reveal defects in calcium signaling

MAPT 突变之间共有的保守基因特征揭示了钙信号传导的缺陷

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作者:Miguel A Minaya, Sidhartha Mahali, Abhirami K Iyer, Abdallah M Eteleeb, Rita Martinez, Guangming Huang, John Budde, Sally Temple, Alissa L Nana, William W Seeley, Salvatore Spina, Lea T Grinberg, Oscar Harari, Celeste M Karch

Methods

We analyzed genes differentially expressed in induced pluripotent stem cell-derived neurons (iPSC-neurons) that represent the three major categories of MAPT mutations: splicing (IVS10 + 16), exon 10 (p.P301L), and C-terminal (p.R406W) compared with isogenic controls. The genes that were commonly differentially expressed in MAPT IVS10 + 16, p.P301L, and p.R406W neurons were enriched in trans-synaptic signaling, neuronal processes, and lysosomal function. Many of these pathways are sensitive to disruptions in calcium homeostasis. One gene, CALB1, was significantly reduced across the three MAPT mutant iPSC-neurons and in a mouse model of tau accumulation. We observed a significant reduction in calcium levels in MAPT mutant neurons compared with isogenic controls, pointing to a functional consequence of this disrupted gene expression. Finally, a subset of genes commonly differentially expressed across MAPT mutations were also dysregulated in brains from MAPT mutation carriers and to a lesser extent in brains from sporadic Alzheimer disease and progressive supranuclear palsy, suggesting that molecular signatures relevant to genetic and sporadic forms of tauopathy are captured in a dish. The

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