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Central role for MyD88 in the responses of microglia to pathogen-associated molecular patterns
1Department of Neurobiology and Developmental Sciences, University of Arkansas for Medical Sciences, Little Rock, AR 72205, USA.
Abstract:
Microglia, the innate immune effector cells of the CNS parenchyma, express TLR that recognize conserved motifs of microorganisms referred to as pathogen-associated molecular patterns (PAMP). All TLRs identified to date, with the exception of TLR3, use a common adaptor protein, MyD88, to transduce activation signals. Recently, we reported that microglial activation in response to the Gram-positive bacterium Staphylococcus aureus was not completely attenuated following TLR2 ablation, suggesting the involvement of additional receptors. To assess the functional role of alternative TLRs in microglial responses to S. aureus and its cell wall product peptidoglycan as well as the Gram-negative PAMP LPS, we evaluated primary microglia from MyD88 knockout (KO) and wild-type mice. The induction of TNF-alpha, IL-12 p40, and MIP-2 (CXCL2) expression by S. aureus- and peptidoglycan-stimulated microglia was MyD88 dependent, as revealed by the complete inhibition of cytokine production in MyD88 KO cells. In addition, the expression of additional pattern recognition receptors, including TLR9, pentraxin-3, and lectin-like oxidized LDL receptor-1, was regulated, in part, via a MyD88-dependent manner as demonstrated by the attenuated expression of these receptors in MyD88 KO microglia. Microglial activation was only partially inhibited in LPS-stimulated MyD88 KO cells, suggesting the involvement of MyD88-independent pathways. Collectively, these findings reveal the complex mechanisms for microglia to respond to diverse bacterial pathogens, which occur via both MyD88-dependent and -independent pathways.
Insights
Microglia use MyD88-dependent and -independent pathways to respond to bacterial pathogens. This study shows MyD88 is crucial for responses to Staphylococcus aureus and peptidoglycan, but not entirely for LPS.
Area of Science:
- Neuroimmunology
- Innate Immunity
- Microbial Recognition
Background:
- Microglia are key innate immune cells in the central nervous system.
- Toll-like receptors (TLRs) on microglia recognize pathogen-associated molecular patterns (PAMPs).
- MyD88 is a common adaptor protein for most TLR signaling pathways.
Purpose of the Study:
- To investigate the role of MyD88 in microglial responses to bacterial PAMPs.
- To understand the involvement of alternative TLRs in microglial activation.
- To elucidate MyD88-dependent and -independent pathways in microglial immunity.
Main Methods:
- Primary microglia from MyD88 knockout (KO) and wild-type mice were used.
- Microglial activation was assessed by measuring cytokine and chemokine expression (TNF-alpha, IL-12 p40, MIP-2).
- Expression of pattern recognition receptors was evaluated in MyD88 KO and wild-type microglia.
Main Results:
- Microglial responses to Staphylococcus aureus and peptidoglycan were MyD88 dependent.
- Cytokine and chemokine production was completely inhibited in MyD88 KO cells for these stimuli.
- Microglial responses to LPS were only partially inhibited, indicating MyD88-independent pathways.
- Expression of TLR9, pentraxin-3, and LOX-1 was partly regulated by MyD88.
Conclusions:
- Microglia employ complex, dual pathways (MyD88-dependent and -independent) to respond to various bacterial pathogens.
- MyD88 is essential for mediating microglial activation by Gram-positive bacteria and their products.
- MyD88-independent mechanisms contribute to microglial responses, particularly to Gram-negative PAMPs like LPS.
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