Publication | Closed Access
Inactivation of TNF Signaling by Rationally Designed Dominant-Negative TNF Variants
257
Citations
15
References
2003
Year
ImmunologyCell DeathPathologyImmunologic MechanismImmunotherapyTnf SignalingInflammationSignaling PathwayCell RegulationReceptor Tyrosine KinaseCell SignalingNative TnfChronic InflammationVariant TnfCell BiologyTumor MicroenvironmentCytokineAnti-inflammatorySignal TransductionTnf ReceptorsMedicine
Tumor necrosis factor (TNF) is a key regulator of inflammatory responses and has been implicated in many pathological conditions. We used structure-based design to engineer variant TNF proteins that rapidly form heterotrimers with native TNF to give complexes that neither bind to nor stimulate signaling through TNF receptors. Thus, TNF is inactivated by sequestration. Dominant-negative TNFs represent a possible approach to anti-inflammatory biotherapeutics, and experiments in animal models show that the strategy can attenuate TNF-mediated pathology. Similar rational design could be used to engineer inhibitors of additional TNF superfamily cytokines as well as other multimeric ligands.
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