AI Article Synopsis

  • Cell death is crucial for maintaining balance in living organisms, and abnormal FPR1 expression in keratinocytes can lead to a harmful cell death process called necroptosis, which disrupts skin barrier function.
  • This study focused on understanding how FPR1 activation triggers cell death in keratinocytes using HaCaT cells, while assessing various signaling pathways involved.
  • Results showed that stimulating purinergic receptor P2X7 increases FPR1 levels and activates cell death through the Gβγ-pERK signaling pathway, suggesting that targeting these pathways could offer new treatment options to prevent damaging cell death in the skin.

Article Abstract

Background: Cell death constitutes a pivotal biological phenomenon essential for the preservation of homeostasis within living organisms. In the context of maintaining a functional skin barrier, keratinocytes exert positively and negatively control cell death signals. However, in patients with severe drug eruptions, anomalous overexpression of the formyl peptide receptor 1 (FPR1) in keratinocytes elicits a distinctive mode of cell death known as necroptosis, thereby suffering a loss of the skin barrier. The precise molecular mechanisms connecting FPR1 activation to this cell death remain unclear.

Objective: We have investigated the intracellular signal transduction cascade governing FPR1-mediated cell death in cultured keratinocytes.

Methods: We used HaCaT cells as a model keratinocyte. The expression of FPR1 was detected with qPCR. The presence of cell death events was monitored through live-cell fluorescent staining and LDH release assays. Furthermore, the phosphorylation of ERK was assessed via Western blot analysis. Intracellular signal pathways were investigated using specific inhibitors.

Results: Ligand stimulation of an endogenous ion channel, purinergic receptor P2X7 (P2X7R), increased the FPR1 expression level. This upregulated FPR1 demonstrated functional competence in the phosphorylation of downstream MAP kinase and the initiation of cell death. Notably, this cell death was ameliorated upon the administration of inhibitors targeting Gβγ, ERK, and caspases.

Conclusion: The induction and stimulation of FPR1 initiated apoptosis in keratinocytes via the Gβγ-pERK signaling pathway. Our findings postulate that the downstream components of FPR1 represent an alternative therapeutic target for preventing unintended keratinocyte cell death.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.jdermsci.2024.10.001DOI Listing

Publication Analysis

Top Keywords

cell death
36
cell
9
death
9
signal pathways
8
skin barrier
8
intracellular signal
8
fpr1
7
p2x7r-primed keratinocytes
4
keratinocytes susceptible
4
susceptible apoptosis
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!