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Publication : ADAM10 missense mutations potentiate β-amyloid accumulation by impairing prodomain chaperone function.

First Author  Suh J Year  2013
Journal  Neuron Volume  80
Issue  2 Pages  385-401
PubMed ID  24055016 Mgi Jnum  J:201818
Mgi Id  MGI:5515832 Doi  10.1016/j.neuron.2013.08.035
Citation  Suh J, et al. (2013) ADAM10 Missense Mutations Potentiate beta-Amyloid Accumulation by Impairing Prodomain Chaperone Function. Neuron 80(2):385-401
abstractText  The generation of Abeta, the main component of senile plaques in Alzheimer's disease (AD), is precluded by alpha-secretase cleavage within the Abeta domain of the amyloid precursor protein (APP). We identified two rare mutations (Q170H and R181G) in the prodomain of the metalloprotease, ADAM10, that cosegregate with late-onset AD (LOAD). Here, we addressed the pathogenicity of these mutations in transgenic mice expressing human ADAM10 in brain. In Tg2576 AD mice, both mutations attenuated alpha-secretase activity of ADAM10 and shifted APP processing toward beta-secretase-mediated cleavage, while enhancing Abeta plaque load and reactive gliosis. We also demonstrated ADAM10 expression potentiates adult hippocampal neurogenesis, which is reduced by the LOAD mutations. Mechanistically, both LOAD mutations impaired the molecular chaperone activity of ADAM10 prodomain. Collectively, these findings suggest that diminished alpha-secretase activity, owing to LOAD ADAM10 prodomain mutations, leads to AD-related pathology, strongly supporting ADAM10 as a promising therapeutic target for this devastating disease.
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