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Publication : Snapin-mediated BACE1 retrograde transport is essential for its degradation in lysosomes and regulation of APP processing in neurons.

First Author  Ye X Year  2014
Journal  Cell Rep Volume  6
Issue  1 Pages  24-31
PubMed ID  24373968 Mgi Jnum  J:207508
Mgi Id  MGI:5559004 Doi  10.1016/j.celrep.2013.12.008
Citation  Ye X, et al. (2014) Snapin-mediated BACE1 retrograde transport is essential for its degradation in lysosomes and regulation of APP processing in neurons. Cell Rep 6(1):24-31
abstractText  beta site amyloid precursor protein (APP)-cleaving enzyme 1 (BACE1) is the major beta secretase for generating beta-amyloid (Abeta) peptides. The acidic environment of endosomes is optimal for beta secretase activity. However, the mechanisms regulating BACE1 traffic from endosomes to lysosomes for degradation are largely unknown. Here, using snapin-deficient mice combined with gene rescue experiments, we reveal that Snapin, as a dynein motor adaptor for late endosomes, mediates BACE1 retrograde transport. hAPP mutant live neurons and mouse brains exhibited BACE1 accumulation within the altered late endocytic organelles and defective lysosomal targeting due to reduced Snapin-dynein coupling. Deleting snapin or disrupting Snapin-dynein coupling reduces BACE1 transport to lysosomes for degradation, thus enhancing APP processing. Overexpressing Snapin in hAPP neurons reduces beta site cleavage of APP by enhancing BACE1 turnover. Altogether, our study provides mechanistic insights into the complex regulation of BACE1 level and activity and turnover through retrograde transport, thus controlling Abeta generation in neurons.
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