Site-specific Phosphorylation of Tau Accompanied by Activation of Mitogen-activated Protein Kinase (MAPK) in Brains of Niemann-Pick Type C Mice*
- Naoya Sawamura‡,
- Jian-Sheng Gong‡,
- William S. Garver§,
- Randall A. Heidenreich§,
- Haruaki Ninomiya¶,
- Kousaku Ohno¶,
- Katsuhiko Yanagisawa‡ and
- Makoto Michikawa‡‖
- From the ‡Department of Dementia Research, National Institute for Longevity Sciences, 36-3 Gengo, Morioka, Obu, Aichi 474-8522, Japan, §Department of Pediatrics, The University of Arizona, Steele Memorial Children's Research Center, Tucson, Arizona 85724, and ¶Department of Neurobiology, Tottori University, Faculty of Medicine, Yonago, Tottori 683, Japan
Abstract
Niemann-Pick type C (NPC) disease is characterized by an accumulation of cholesterol in most tissues and progressive neurodegeneration with the formation of neurofibrillary tangles. Neurofibrillary tangles are composed of paired helical filaments (PHF), a major component of which is the hyperphosphorylated tau. In this study we used NPC heterozygous and NPC homozygous mouse brains to investigate the molecular mechanism responsible for tauopathy in NPC. Immunoblot analysis using anti-tau antibodies (Tau-1, PHF-1, AT-180, and AT-100) revealed site-specific phosphorylation of tau at Ser-396 and Ser-404 in the brains of NPC homozygous mice. Mitogen-activated protein kinase, a potential serine kinase known to phosphorylate tau, was activated, whereas other serine kinases such as glycogen synthase kinase-3β and cyclin-dependent kinase 5 were inactive. Morphological examination demonstrated that a number of neurons, the perikarya of which strongly immunostained with PHF-1, exhibited polymorphorous cytoplasmic inclusion bodies and multi-concentric lamellar-like bodies. Importantly, the accumulation of intracellular cholesterol in NPC mouse brains was determined to be a function of age. From these results we conclude that abnormal cholesterol metabolism due to the genetic mutation in NPC1may be responsible for activation of the mitogen-activated protein kinase-signaling pathway and site-specific phosphorylation of tauin vivo, leading to tauopathy in NPC.
- NPC
- Niemann-Pick type C
- AD
- Alzheimer's disease
- NFT
- neurofibrillary tangle
- PHF
- paired helical filaments
- ECL
- enhanced chemiluminescence
- MAP
- mitogen-activated protein
- MAPK
- MAP kinase
- GSK-3β
- glycogen synthase kinase-3β
- PBS
- phosphate-buffered saline
- RT
- room temperature
- Received October 25, 2000.
- Revision received December 12, 2000.
- The American Society for Biochemistry and Molecular Biology, Inc.











