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NIH scientists discover how dengue virus infects cells

Gert van der Hoek

In Memoriam - Editor, Senior Moderator
Tuesday, October 12, 2010

NIH scientists discover how dengue virus infects cells

Discovery essential for testing potential treatments

National Institutes of Health researchers have discovered a key step in how the dengue virus infects a cell. The discovery one day may lead to new drugs to prevent or treat the infection.

The researchers discovered how the dengue virus releases itself from the protective membrane that shields it as it penetrates deep inside the cell. The discovery allows researchers to study the invasion process in the laboratory and provides a means to test potential treatments for the virus.

Dengue (http://www.cdc.gov/dengue/), which is transmitted by mosquitoes, infects up to 100 million people each year. People bitten by an infected mosquito first develop a fever, followed by other symptoms such as joint pain, rash and nausea. Without treatment, symptoms may become more severe. Patients with the severe form of the disease, dengue hemorrhagic fever, may develop difficulty breathing, bruising, bleeding from the nose or gums, and breakdown of the circulatory system. Each year, 22,000 people ? most of them children ? die from dengue, according to the World Health Organization (http://www.who.int/csr/disease/dengue/impact/en/).

To infect a cell, the virus binds to the cell membrane. The cell membrane engulfs the virus, enveloping it in a pouch-like structure known as an endosome. To begin the infection process, the virus delivers its hereditary material into the cytosol, the fluid interior of the cell, where it begins reproducing itself. To do so, however, it must first release itself from the endosome. The virus does this by fusing its membrane with the endosomal membrane. When the two membranes come together, they form a pore through which the virus? genetic material is released.

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