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Published on: November 2, 2018
NF-κB signaling and cell-fate decision induced by a fast-dissociating tumor necrosis factor mutant
Xiaoling Zhang1, Ning Yin1, Annan Guo2
1Center for Quantitative Biology, Academy for Advanced Interdisciplinary Studies, Peking University, Beijing, China.
Abstract:
Tumor necrosis factor (TNF) is a pluripotent inflammatory cytokine that can induce both the pro-survival nuclear factor kappa B (NF-κB) pathway and the pro-apoptotic caspase pathway. Selectively activating only one of the two pathways remains challenging. We used TNF mutants with different receptor binding kinetics to study their effects on NF-κB signaling dynamics and cell apoptosis. A TNF mutant, R1antTNF, which binds to TNFR1 with increased association and dissociation rates, induced NF-κB signaling with shorter response time and first peak duration. The short nuclear stay of NF-κB led to biased activation of downstream genes, favoring the fast response ones. At the same time, R1antTNF retains pro-apoptotic activity. At 10 ng/ml, R1antTNF selectively activated the pro-apoptotic pathway rather than the pro-survival NF-κB pathway. Our study provides a new example for the emerging evidence that ligand-receptor binding kinetics play a key role in the selective activation of downstream pathways, which deserves more attention in future drug discovery and disease studies.
Insights
Tumor necrosis factor (TNF) mutants with altered binding kinetics selectively activate cell death pathways over survival pathways. This finding highlights the critical role of ligand-receptor binding dynamics in controlling cellular responses.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Tumor necrosis factor (TNF) is a key inflammatory cytokine.
- TNF signaling can activate both pro-survival (NF-κB) and pro-apoptotic pathways.
- Selective activation of these pathways is challenging.
Purpose of the Study:
- To investigate how TNF receptor binding kinetics influence downstream signaling pathways.
- To determine if altered TNF binding kinetics can selectively activate apoptosis over NF-κB survival signaling.
Main Methods:
- Utilized TNF mutants with modified TNFR1 binding kinetics.
- Analyzed NF-κB signaling dynamics, including response time and nuclear translocation.
- Assessed cell apoptosis induction by TNF mutants.
Main Results:
- A TNF mutant (R1antTNF) with faster association/dissociation rates altered NF-κB signaling dynamics.
- R1antTNF induced shorter NF-κB response times and favored fast-response gene activation.
- At specific concentrations, R1antTNF selectively triggered apoptosis, bypassing NF-κB activation.
Conclusions:
- Ligand-receptor binding kinetics are crucial for selective pathway activation.
- TNF binding kinetics can be engineered to bias cellular responses towards apoptosis.
- This offers potential for targeted therapeutic strategies in diseases involving TNF signaling.
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