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Merck
CN
  • Membrane microdomain switching: a regulatory mechanism of amyloid precursor protein processing.

Membrane microdomain switching: a regulatory mechanism of amyloid precursor protein processing.

The Journal of cell biology (2008-10-22)
Takashi Sakurai, Kumi Kaneko, Misako Okuno, Koji Wada, Taku Kashiyama, Hideaki Shimizu, Takumi Akagi, Tsutomu Hashikawa, Nobuyuki Nukina
摘要

Neuronal activity has an impact on beta cleavage of amyloid precursor protein (APP) by BACE1 to generate amyloid-beta peptide (Abeta). However, the molecular mechanisms underlying this effect remain to be elucidated. Cholesterol dependency of beta cleavage prompted us to analyze immunoisolated APP-containing detergent-resistant membranes from rodent brains. We found syntaxin 1 as a key molecule for activity-dependent regulation of APP processing in cholesterol-dependent microdomains. In living cells, APP associates with syntaxin 1-containing microdomains through X11-Munc18, which inhibits the APP-BACE1 interaction and beta cleavage via microdomain segregation. Phosphorylation of Munc18 by cdk5 causes a shift of APP to BACE1-containing microdomains. Neuronal hyperactivity, implicated in Abeta overproduction, promotes the switching of APP microdomain association as well as beta cleavage in a partially cdk5-dependent manner. We propose that microdomain switching is a mechanism of cholesterol- and activity-dependent regulation of APP processing in neurons.

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Roche
抗 HA-过氧化物酶,高亲和力, from rat IgG1
Sigma-Aldrich
抗APP A4抗体,a.a.APP{NT}的66-81,克隆22C11, clone 22C11, Chemicon®, from mouse