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BLK positively regulates TLR/IL-1R signaling by catalyzing TOLLIP phosphorylation. | LitMetric

BLK positively regulates TLR/IL-1R signaling by catalyzing TOLLIP phosphorylation.

J Cell Biol

State Key Laboratory for Animal Disease Control and Prevention, College of Veterinary Medicine, Lanzhou University, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou, China.

Published: February 2024

AI Article Synopsis

  • TLR/IL-1R signaling is essential for detecting harmful pathogens and triggering immune responses, with intracellular regulators playing a key role.
  • BLK is identified as a positive regulator of this signaling pathway, where its absence leads to reduced inflammatory cytokine production and increased resistance to IL-1β.
  • The study reveals that BLK interacts with IL1R1 and IL1RAcP, and upon stimulation, it activates itself and phosphorylates TOLLIP, promoting its dissociation from IRAK1 to enhance immune signaling.

Article Abstract

TLR/IL-1R signaling plays a critical role in sensing various harmful foreign pathogens and mounting efficient innate and adaptive immune responses, and it is tightly controlled by intracellular regulators at multiple levels. In particular, TOLLIP forms a constitutive complex with IRAK1 and sequesters it in the cytosol to maintain the kinase in an inactive conformation under unstimulated conditions. However, the underlying mechanisms by which IRAK1 dissociates from TOLLIP to activate TLR/IL-1R signaling remain obscure. Herein, we show that BLK positively regulates TLR/IL-1R-mediated inflammatory response. BLK-deficient mice produce less inflammatory cytokines and are more resistant to death upon IL-1β challenge. Mechanistically, BLK is preassociated with IL1R1 and IL1RAcP in resting cells. IL-1β stimulation induces heterodimerization of IL1R1 and IL1RAcP, which further triggers BLK autophosphorylation at Y309. Activated BLK directly phosphorylates TOLLIP at Y76/86/152 and further promotes TOLLIP dissociation from IRAK1, thereby facilitating TLR/IL-1R-mediated signal transduction. Overall, these findings highlight the importance of BLK as an active regulatory component in TLR/IL-1R signaling.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10711807PMC
http://dx.doi.org/10.1083/jcb.202302081DOI Listing

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