The Ca2+ sensor S100A1 modulates neuroinflammation, histopathology and Akt activity in the PSAPP Alzheimer's disease mouse model

被引:28
作者
Afanador, Lauriaselle [1 ]
Roltsch, Emily A. [4 ]
Holcomb, Leigh [2 ,3 ]
Campbell, Kerry S. [1 ]
Keeling, David A. [1 ]
Zhang, Yan [1 ]
Zimmer, Danna B. [1 ]
机构
[1] Univ Maryland, Sch Med, Dept Biochem & Mol Biol, Ctr Biomol Therapeut, Rockville, MD 20850 USA
[2] Texas A&M Univ, Coll Med, Texas A&M Hlth Sci Ctr, Temple, TX 76508 USA
[3] Cent Texas Vet Hlth Care Syst, Neuropsychiat Res Program, Temple, TX USA
[4] LSU Hlth Sci Ctr, Sch Med, New Orleans, LA 70112 USA
关键词
Astrocytosis; Microgliosis; Plaque load; Neurodegeneration; GSK3; beta; Ryanodine receptor; S100B; PC12; cells; AMYLOID-PRECURSOR-PROTEIN; NERVOUS-SYSTEM; SIGNAL-TRANSDUCTION; RYANODINE RECEPTOR; BEHAVIORAL-CHANGES; DENDRITIC SPINE; SKELETAL-MUSCLE; BINDING-SITE; CALCIUM; CALMODULIN;
D O I
10.1016/j.ceca.2014.05.002
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The contribution of the Ca2+ sensor S100A1 to in vivo Alzheimer's disease (AD) pathobiology has not been elucidated although S100A1 regulates numerous cellular processes linked to AD. This study uses genetic ablation to ascertain the effects of S100A1 on neuroinflammation, beta-amyloid (A beta) plaque deposition and Akt activity in the PSAPP AD mouse model. PSAPP/S100A1(-/-) mice exhibited decreases in astrocytosis (GFAP burden), microgliosis (Iba1 burden) and plaque load/number when compared to PSAPP/S100A1(+/+) mice at six and twelve months of age. The presence of detectable S100A1 staining in human AD specimens is consistent with a detrimental gain of S100A1 function in AD. S100A1 ablation also reduced plaque associated and increased non-plaque associated PO4-Akt and PO4-GSK3 beta staining. S100A1.Akt complexes were undetectable in PC12 cells and AD brain tissue suggesting that S100A1 indirectly modulates Akt activity. In contrast, S100A1.RyR (ryanodine receptor) complexes were present in human/mouse AD brain and exhibited Ca2+-dependent formation in neuronal cells. This is the first direct demonstration of an S100A1. target protein complex in tissue/cells and identifies the RyR as a primary S100A1 target protein in the brain. Collectively, these data suggest that S100A1 inhibition may be a novel strategy for normalizing aberrant Ca2+ signaling in AD. Published by Elsevier Ltd.
引用
收藏
页码:68 / 80
页数:13
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