Central role for MyD88 in the responses of microglia to pathogen-associated molecular patterns

Nilufer Esen1, Tammy Kielian

  • 1Department of Neurobiology and Developmental Sciences, University of Arkansas for Medical Sciences, Little Rock, AR 72205, USA.

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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