PKCepsilon increases endothelin converting enzyme activity and reduces amyloid plaque pathology in transgenic mice.

Choi, Doo-Sup; Wang, Dan; Yu, Gui-Qui; Zhu, Guofen; Kharazia, Viktor N; Paredes, J Peter; Chang, Wesley S; Deitchman, Jason K et al. · Proc Natl Acad Sci U S A · 2006

basic_science · Level V

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Abstract

Deposition of plaques containing amyloid beta (Abeta) peptides is a neuropathological hallmark of Alzheimer's disease (AD). Here we demonstrate that neuronal overexpression of the epsilon isozyme of PKC decreases Abeta levels, plaque burden, and plaque-associated neuritic dystrophy and reactive astrocytosis in transgenic mice expressing familial AD-mutant forms of the human amyloid precursor protein (APP). Compared with APP singly transgenic mice, APP/PKCepsilon doubly transgenic mice had decreased Abeta levels but showed no evidence for altered cleavage of APP. Instead, PKCepsilon overexpression selectively increased the activity of endothelin-converting enzyme, which degrades Abeta. The activities of other Abeta-degrading enzymes, insulin degrading enzyme and neprilysin, were unchanged. These results indicate that increased neuronal PKCepsilon activity can promote Abeta clearance and reduce AD neuropathology through increased endothelin-converting enzyme activity.

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