CCL2 Overexpression in the Brain Promotes Glial Activation and Accelerates Tau Pathology in a Mouse Model of Tauopathy
FRONTIERS IN IMMUNOLOGY
Authors: Joly-Amado, Aurelie; Hunter, Jordan; Quadri, Zainuddin; Zamudio, Frank; Rocha-Rangel, Patricia, V; Chan, Deanna; Kesarwani, Anisha; Nash, Kevin; Lee, Daniel C.; Morgan, Dave; Gordon, Marcia N.; Selenica, Maj-Linda B.
Abstract
Innate immune activation is a major contributor to Alzheimer's Disease (AD) pathophysiology, although the mechanisms involved are poorly understood. Chemokine C-C motif ligand (CCL) 2 is produced by neurons and glial cells and is upregulated in the AD brain. Transgene expression of CCL2 in mouse models of amyloidosis produces microglia-induced amyloid beta oligomerization, a strong indication of the role of these activation pathways in the amyloidogenic processes of AD. We have previously shown that CCL2 polarizes microglia in wild type mice. However, how CCL2 signaling contributes to tau pathogenesis remains unknown. To address this question, CCL2 was delivered via recombinant adeno-associated virus serotype 9 into both cortex and hippocampus of a mouse model with tau pathology (rTg4510). We report that CCL2 overexpression aggravated tau pathology in rTg4510 as shown by the increase in Gallyas stained neurofibrillary tangles as well as phosphorylated tau-positive inclusions. In addition, biochemical analysis showed a reduction in the levels of detergent-soluble tau species followed by increase in the insoluble fraction, indicating a shift toward larger tau aggregates. Indeed, increased levels of high molecular weight species of phosphorylated tau were found in the mice injected with CCL2. We also report that worsening of tau pathology following CCL2 overexpression was accompanied by a distinct inflammatory response. We report an increase in leukocyte common antigen (CD45) and Cluster of differentiation 68 (CD68) expression in the brain of rTg4510 mice without altering the expression levels of a cell-surface protein Transmembrane Protein 119 (Tmem119) and ionized calcium-binding adaptor molecule 1 (Iba-1) in resident microglia. Furthermore, the analysis of cytokines in brain extract showed a significant increase in interleukin (IL)-6 and CCL3, while CCL5 levels were decreased in CCL2 mice. No changes were observed in IL-1 alpha, IL-1 beta, TNF-alpha. IL-4, Vascular endothelial growth factor-VEGF, IL-13 and CCL11. Taken together our data report for the first time that overexpression of CCL2 promotes the increase of pathogenic tau species and is associated with glial neuroinflammatory changes that are deleterious. We propose that these events may contribute to the pathogenesis of Alzheimer's disease and other tauopathies.
The effect of pharmacological PI3K gamma inhibitor on eotaxin-induced human eosinophil functions
PULMONARY PHARMACOLOGY & THERAPEUTICS
Authors: Saito, Yukiko; Takeda, Masahide; Nishikawa, Junko; Konno, Yasunori; Tamaki, Mami; Itoga, Masamichi; Kobayashi, Yoshiki; Moritoki, Yuki; Ito, Wataru; Chihara, Junichi; Ueki, Shigeharu
Abstract
Background: Asthma is characterized by chronic inflammation caused by activation of immune cells including Th2 lymphocytes and eosinophils. Phosphoinositide 3-kinase (PI3K) gamma deficient asthmatic mice did not develop lung eosinophilia, although the detailed mechanisms are not well known. A CC chemokine eotaxin (CCL11) plays a prominent role in developing eosinophilic inflammation through CCR3. In this study, we tested the roles of PI3K gamma in eotaxin-induced eosinophil functions using a pharmacological inhibitor. Method: Human peripheral blood eosinophils were isolated by CD16-negative selection method. The effect of AS605240, synthetic PI3K gamma inhibitor on eotaxin-induced adhesion, chemotaxis, and degranulation were studied using intracellular adhesion molecule-1 (ICAM-1)-coated plates, Boyden chamber system, ELISA for eosinophil-derived neurotoxin (EDN) levels in the culture supernatant, respectively. CCR3 expression levels and extracellular signal-regulated kinase 1/2 (ERK1/2) phosphorylation were assessed by flowcytometry. Involvement of PI3K gamma in spontaneous apoptosis was studied using flowcytometry. Results: Although AS605240 did not affect the eosinophil spontaneous apoptosis, eotaxin-induced chemotaxis, adhesion to ICAM-1 coated plate, and EDN release were inhibited by AS605240. AS605240 also inhibited the eotaxin-induced ERK1/2 phosphorylation without down-regulation of surface CCR3 expression. Conclusion: These results indicate that PI3K gamma inhibitor attenuates eotaxin-induced eosinophil functions by suppressing the downstream signaling of CCR3 without significant cytotoxicity. PI3K gamma plays an important role in the development of eosinophilic inflammation and blockade of PI3K gamma might be a therapeutic strategy for treatment of eosinophil-related diseases including asthma. Crown Copyright (C) 2013 Published by Elsevier Ltd. All rights reserved.