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P38α-MAPK phosphorylates Snapin and reduces Snapin-mediated BACE1 transportation in APP-transgenic mice

FASEB J. 2021-07; 
Laura Schnöder, Inge Tomic, Laura Schwindt, Dominic Helm, Mandy Rettel, Walter Schulz-Schaeffer, Elmar Krause, Jens Rettig, Klaus Fassbender, Yang Liu
Products/Services Used Details Operation
Custom Vector Construction Snapin-overexpressing cell lines were constructed by stably transfecting SH-SY5Y cells with a pcDNA3.1+/C-(K)-DYK vector encoding human Snapin (OHu56032D) (wt) and vectors encoding Snapins containing point mutations from serine to alanine at 112 (S112A; AGT → GCC) and 133 (S133A; TCC → GCC) (all vectors were provided by GenScript, Leiden, the Netherlands).  Get A Quote

摘要

Amyloid β peptide (Aβ) is the major pathogenic molecule in Alzheimer's disease (AD). BACE1 enzyme is essential for the generation of Aβ. Deficiency of p38α-MAPK in neurons increases lysosomal degradation of BACE1 and decreases Aβ deposition in the brain of APP-transgenic mice. However, the mechanisms mediating effects of p38α-MAPK are largely unknown. In this study, we used APP-transgenic mice and cultured neurons and observed that deletion of p38α-MAPK specifically in neurons decreased phosphorylation of Snapin at serine, increased retrograde transportation of BACE1 in axons and reduced BACE1 at synaptic terminals, which suggests that p38α-MAPK deficiency promotes axonal transportation of BACE1 from it... More

关键词

mapk14, Alzheimer's disease, BACE1, Snapin, phosphorylation, trafficking