AI Article Synopsis

  • Cell necroptosis is a regulated form of inflammatory cell death that significantly impacts the release of inflammatory mediators from immune cells, particularly polymorphonuclear neutrophils (PMNs), and plays a key role in inflammation progression.
  • The study reveals that TBK1 and IKKε act as negative regulators of necroptosis in PMNs by inhibiting the formation of the necrosome complex in response to LPS signaling, which is crucial for controlling inflammation.
  • Disruption of TBK1 function leads to heightened necroptosis and increased inflammation in the lungs, suggesting that targeting the LPS-TLR4-TBK1 signaling pathway could offer new therapeutic approaches for managing inflammation and cell death in diseases.

Article Abstract

Cell necroptosis, a form of regulated inflammatory cell death, is one of the mechanisms that controls cell release of inflammatory mediators from innate immune cells, such as polymorphonuclear neutrophils (PMNs), and critically regulates the progress of inflammation. Cell necroptosis features receptor-interacting protein (RIPK) 1 activation and necroptosome formation. This leads to loss of plasma membrane integrity, the release of cell contents into the extracellular space, and subsequent increased inflammation. Here, we report an intra-PMN mechanism of negative regulation of necroptosis mediated through TBK1/IKKε. Using an in vivo mouse model of intratracheal injection (i.t.) of LPS and in vitro LPS stimulation of mouse PMN, we found that LPS-TLR4 signaling in PMNs activates and phosphorylates TBK1 and IKKε, which in turn suppress LPS-induced formation of the RIPK1-RIPK3-MLKL (necrosome) complex. TBK1 dysfunction by knockdown or inhibitor significantly increases the phosphorylation of RIPK1 (∼67%), RIPK3 (∼68%), and MLKL (∼50%) and promotes RIPK1-RIPK3 and RIPK3-MLKL interactions and increases PMN necroptosis (∼83%) in response to LPS, with subsequent augmented lung inflammation. These findings suggest that the LPS-TLR4-TBK1 axis serves as a negative regulator for PMN necroptosis and might be a therapeutic target for modulating PMN death and inflammation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8183424PMC
http://dx.doi.org/10.1097/SHK.0000000000001632DOI Listing

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