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Correlation between orphan nuclear receptor Nurr1 expression and amyloid deposition in 5XFAD mice,an animal model of Alzheimer's disease
Authors:Minho Moon  Inhye Jeong  Chun‐Hyung Kim  Jihong Kim  Paula K J Lee  Inhee Mook‐Jung  Pierre Leblanc  Kwang‐Soo Kim
Institution:1. Molecular Neurobiology Laboratory, McLean Hospital/Harvard Medical School, Belmont, Massachusetts, USA;2. Program in Neuroscience, Harvard Medical School, Belmont, Massachusetts, USA;3. Department of Biochemistry and Biomedical Sciences, Seoul National University College of Medicine, Seoul, Korea
Abstract:The functional roles of the orphan nuclear receptor, Nurr1, have been extensively studied and well established in the development and survival of midbrain dopamine neurons. As Nurr1 and other NR4A members are widely expressed in the brain in overlapping and distinct manners, it has been an open question whether Nurr1 has important function(s) in other brain areas. Recent studies suggest that up‐regulation of Nurr1 expression is critical for cognitive functions and/or long‐term memory in forebrain areas including hippocampal formation. Questions remain about the association between Nurr1 expression and Alzheimer's disease (AD) brain pathology. Here, using our newly developed Nurr1‐selective antibody, we report that Nurr1 protein is prominently expressed in brain areas with Aβ accumulation, that is, the subiculum and the frontal cortex, in the 5XFAD mouse and that Nurr1 is highly co‐expressed with Aβ at early stages. Furthermore, the number of Nurr1‐expressing cells significantly declines in the 5XFAD mouse in an age‐dependent manner, accompanied by increased plaque deposition. Thus, our findings suggest that altered expression of Nurr1 is associated with AD progression.
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Keywords:5XFAD mice  Alzheimer's disease  amyloid beta  NR4A2  Nurr1  plaque deposition
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