A Built-In Defense Against Pandemic Flu
Researchers have identified a previously unknown immune mechanism that helps prevent influenza viruses from jumping from animal hosts to humans, a process known as zoonotic spillover. The study, published in Science, reveals that the STING-NF-kappaB signaling pathway in human cells acts as a natural barrier against animal-origin influenza strains, providing a new understanding of why most flu viruses that circulate in birds and pigs fail to establish sustained transmission in human populations.
The discovery has significant implications for pandemic preparedness, as influenza pandemics occur when an animal flu virus acquires the ability to overcome species barriers and spread efficiently among humans. Understanding the molecular defenses that normally prevent this crossover could lead to new strategies for predicting and preventing the next pandemic.
The STING Pathway
STING, which stands for Stimulator of Interferon Genes, is a protein that plays a central role in the innate immune system's ability to detect and respond to infections. It has been extensively studied for its role in defending against DNA viruses and bacterial infections, but its involvement in defending against influenza — an RNA virus — was not previously well understood.
The new research shows that when animal-origin influenza viruses attempt to replicate in human cells, their replication process triggers activation of the STING pathway. This activation leads to signaling through NF-kappaB, a master regulator of inflammatory and immune gene expression, which in turn launches a potent antiviral response that suppresses viral replication before it can establish a productive infection.
Critically, the researchers found that influenza viruses that have already adapted to humans have evolved mechanisms to evade or suppress STING-mediated detection. This means that the STING pathway acts as a selective filter: animal viruses that have not yet evolved evasion strategies are blocked, while adapted human viruses pass through.




