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Publication : Dysregulation of Nutrient Sensing and CLEARance in Presenilin Deficiency.

First Author  Reddy K Year  2016
Journal  Cell Rep Volume  14
Issue  9 Pages  2166-2179
PubMed ID  26923592 Mgi Jnum  J:234362
Mgi Id  MGI:5789843 Doi  10.1016/j.celrep.2016.02.006
Citation  Reddy K, et al. (2016) Dysregulation of Nutrient Sensing and CLEARance in Presenilin Deficiency. Cell Rep 14(9):2166-79
abstractText  Attenuated auto-lysosomal system has been associated with Alzheimer disease (AD), yet all underlying molecular mechanisms leading to this impairment are unknown. We show that the amino acid sensing of mechanistic target of rapamycin complex 1 (mTORC1) is dysregulated in cells deficient in presenilin, a protein associated with AD. In these cells, mTORC1 is constitutively tethered to lysosomal membranes, unresponsive to starvation, and inhibitory to TFEB-mediated clearance due to a reduction in Sestrin2 expression. Normalization of Sestrin2 levels through overexpression or elevation of nuclear calcium rescued mTORC1 tethering and initiated clearance. While CLEAR network attenuation in vivo results in buildup of amyloid, phospho-Tau, and neurodegeneration, presenilin-knockout fibroblasts and iPSC-derived AD human neurons fail to effectively initiate autophagy. These results propose an altered mechanism for nutrient sensing in presenilin deficiency and underline an importance of clearance pathways in the onset of AD.
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