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Hemagglutinin is a surface protein of influenza viruses that enables binding to human cells and serves as the primary target for flu vaccines.
Hemagglutinin is a surface protein of influenza viruses that enables binding to human cells and serves as the primary target for flu vaccines.
Hemagglutinin (abbreviated HA) is a glycoprotein found on the surface of influenza viruses. It is one of the most important structural proteins of the virus and plays a critical role in the infection of human and animal cells. The name derives from the protein's ability to agglutinate red blood cells (erythrocytes) -- a process known as hemagglutination.
Hemagglutinin is a trimeric protein, meaning it consists of three identical subunits that together form a functional unit. Each subunit is composed of two polypeptide chains: HA1 and HA2, linked by a disulfide bond. The protein protrudes from the viral surface in a stalk-and-head configuration. At the globular head region lies the receptor-binding site, through which the virus attaches to host cells.
Hemagglutinin fulfills two essential functions during the infection process:
Influenza viruses are classified in part based on their hemagglutinin type. To date, 18 different hemagglutinin subtypes (H1 through H18) have been identified in influenza A viruses. Differences in HA structure determine which animal species a virus can infect and how transmissible it is in humans. Well-known subtypes in humans include H1N1 (Spanish flu, swine flu) and H3N2.
The immune system responds to influenza infection by producing antibodies against hemagglutinin. These antibodies can block the virus from binding to host cells, thereby preventing reinfection. However, the influenza virus continuously alters its hemagglutinin through two key mechanisms:
This variability is why seasonal influenza vaccines must be updated each year.
Hemagglutinin is the primary target antigen for seasonal influenza vaccination. Most licensed influenza vaccines contain purified HA proteins that stimulate the immune system to produce neutralizing antibodies. Researchers are actively pursuing universal flu vaccines that target conserved regions of the HA protein, potentially offering broader protection against multiple influenza strains.
In laboratory diagnostics, the hemagglutination inhibition (HI) test is used to detect antibodies against influenza viruses. The test measures whether a patient's serum can inhibit the hemagglutination of red blood cells by the virus. A positive result indicates prior infection or vaccination.
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