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Published on: April 13, 2017
CD36 signals to the actin cytoskeleton and regulates microglial migration via a p130Cas complex
Lynda M Stuart1, Susan A Bell2, Cameron R Stewart2
1Developmental Immunology/Department of Pediatrics, the Department of Medicine, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts 02114 and; University of Edinburgh Centre for Inflammation Research, Edinburgh EH16 4TJ, United Kingdom.
Abstract:
The pattern recognition receptor CD36 initiates a signaling cascade that promotes microglial activation and recruitment to beta-amyloid deposits in the brain. In the present study we identify the focal adhesion-associated proteins p130Cas, Pyk2, and paxillin as novel members of the tyrosine kinase signaling pathway downstream of CD36 and show that assembly of this complex is essential for microglial migration. In primary microglia and macrophages exposed to beta-amyloid, the scaffolding protein p130Cas is rapidly tyrosine-phosphorylated and co-localizes with CD36 to membrane ruffles contemporaneous with F-actin polymerization. These beta-amyloid-stimulated events are not detected in CD36 null cells and are dependent on CD36 activation of Src family tyrosine kinases. Fyn, a Src kinase known to interact with CD36, co-precipitates with p130Cas and is an essential upstream intermediate in the signaling pathways leading to phosphorylation of the p130Cas substrate domain. Furthermore, the p130Cas-interacting kinase Pyk2 and the cytoskeletal adapter protein paxillin also demonstrate CD36-dependent phosphorylation, identifying these focal adhesion molecules as additional members of this beta-amyloid signaling cascade. Disruption of this p130Cas complex by small interfering RNA silencing inhibits p44/42 mitogen-activated protein kinase phosphorylation and microglial migration, illustrating the importance of this pathway in microglial activation and recruitment. Together, these data are the first to identify the signaling cascade that directly links CD36 to the actin cytoskeleton and, thus, implicates it in diverse processes such as cellular migration, adhesion, and phagocytosis.
Insights
Researchers identified a new signaling pathway linking CD36 to microglial migration. This pathway involves focal adhesion proteins and is crucial for brain immune cell recruitment to beta-amyloid, impacting Alzheimer's disease pathology.
Area of Science:
- Neuroimmunology
- Cellular Signaling
Background:
- CD36 is a pattern recognition receptor involved in microglial activation and recruitment to beta-amyloid.
- Microglial migration is critical for clearing amyloid deposits in the brain.
Purpose of the Study:
- To identify novel signaling molecules downstream of CD36 involved in microglial migration.
- To elucidate the role of focal adhesion proteins in the CD36-mediated signaling cascade.
Main Methods:
- Primary microglia and macrophages were exposed to beta-amyloid.
- Tyrosine phosphorylation and co-localization studies were performed.
- Src family kinases, p130Cas, Pyk2, and paxillin were investigated.
- Small interfering RNA (siRNA) was used to disrupt the p130Cas complex.
Main Results:
- p130Cas, Pyk2, and paxillin were identified as novel downstream signaling components of CD36.
- CD36 activation of Src kinases (including Fyn) leads to p130Cas phosphorylation.
- The p130Cas complex is essential for beta-amyloid-induced microglial migration and p44/42 MAPK phosphorylation.
- These events were dependent on CD36 activation.
Conclusions:
- A novel signaling cascade linking CD36 to the actin cytoskeleton via focal adhesion proteins was identified.
- This pathway is critical for beta-amyloid-induced microglial migration and recruitment.
- The findings implicate CD36 and associated focal adhesion molecules in Alzheimer's disease pathogenesis.
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