Deletion of tumor necrosis factor death receptor inhibits amyloid β generation and prevents learning and memory deficits in Alzheimer's mice

Author:

He Ping1,Zhong Zhenyu1,Lindholm Kristina1,Berning Lilian1,Lee Wendy1,Lemere Cynthia2,Staufenbiel Matthias3,Li Rena4,Shen Yong1

Affiliation:

1. Haldeman Laboratory of Molecular and Cellular Neurobiology

2. Center for Neurologic Diseases, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115

3. Novartis Pharma Ltd., Nervous System Research, CH-4002 Basel, Switzerland

4. Roberts Center for Alzheimer's Research, Sun Health Research Institute, Sun City, AZ 85351

Abstract

The tumor necrosis factor type 1 death receptor (TNFR1) contributes to apoptosis. TNFR1, a subgroup of the TNFR superfamily, contains a cytoplasmic death domain. We recently demonstrated that the TNFR1 cascade is required for amyloid β protein (Aβ)–induced neuronal death. However, the function of TNFR1 in Aβ plaque pathology and amyloid precursor protein (APP) processing in Alzheimer's disease (AD) remains unclear. We report that the deletion of the TNFR1 gene in APP23 transgenic mice (APP23/TNFR1−/−) inhibits Aβ generation and diminishes Aβ plaque formation in the brain. Genetic deletion of TNFR1 leads to reduced β-secretase 1 (BACE1) levels and activity. TNFR1 regulates BACE1 promoter activity via the nuclear factor-κB pathway, and the deletion of TNFR1 in APP23 transgenic mice prevents learning and memory deficits. These findings suggest that TNFR1 not only contributes to neurodegeneration but also that it is involved in APP processing and Aβ plaque formation. Thus, TNFR1 is a novel therapeutic target for AD.

Publisher

Rockefeller University Press

Subject

Cell Biology

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