Immune protein fends off exotic virus

This pathogen, which causes high fevers and severe joint pain, triggered a recent epidemic in Southeast Asia, infecting more than 30% of the population in some areas.

A team led by Marc Lecuit and Matthew Albert at the Pasteur Institute in Paris found that individuals infected with Chikungunya virus had increased levels of type I IFNs in their blood. But the source of the virus-fighting IFN proteins came as a surprise.

Viruses related to Chikungunya trigger type I IFN production mostly from immune cells. But during Chikungunya infection, immune cells neither produced nor responded to type I IFNs. Rather non-immune cells called fibroblasts—the main target of virus infection—provided the essential type I IFN.

This unique feature should be taken into consideration in future efforts to develop therapeutic strategies for controlling Chikungunya virus infection.

About The Journal of Experimental Medicine
The Journal of Experimental Medicine (JEM) is published by The Rockefeller University Press. All editorial decisions on manuscripts submitted are made by active scientists in conjunction with our in-house scientific editors. JEM content is posted to PubMed Central, where it is available to the public for free six months after publication. Authors retain copyright of their published works and third parties may reuse the content for non-commercial purposes under a creative commons license. For more information, please visit www.jem.org.

Schilte, C., et al. 2010. J. Exp. Med. doi:10.1084/jem.20090851.

Media Contact

Rita Sullivan EurekAlert!

More Information:

http://www.rupress.org

All latest news from the category: Studies and Analyses

innovations-report maintains a wealth of in-depth studies and analyses from a variety of subject areas including business and finance, medicine and pharmacology, ecology and the environment, energy, communications and media, transportation, work, family and leisure.

Back to home

Comments (0)

Write a comment

Newest articles

Webb captures top of iconic horsehead nebula in unprecedented detail

NASA’s James Webb Space Telescope has captured the sharpest infrared images to date of a zoomed-in portion of one of the most distinctive objects in our skies, the Horsehead Nebula….

Cost-effective, high-capacity, and cyclable lithium-ion battery cathodes

Charge-recharge cycling of lithium-superrich iron oxide, a cost-effective and high-capacity cathode for new-generation lithium-ion batteries, can be greatly improved by doping with readily available mineral elements. The energy capacity and…

Novel genetic plant regeneration approach

…without the application of phytohormones. Researchers develop a novel plant regeneration approach by modulating the expression of genes that control plant cell differentiation.  For ages now, plants have been the…

Partners & Sponsors