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Hepatitis C therapy: Inhibiting newly discovered microDNA molecule

04.05.06 | Federation of American Societies for Experimental Biology

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Dr. Sarnow discusses the most recent findings in this work on April 5 at Experimental Biology 2006 in San Francisco. His presentation is part of the scientific program of the American Society for Biochemistry and Molecular Biology.

MicroRNAs, or miRNAs for short, are small RNA molecules that regulate genes in many plant and animal species. Although miRNAs were not discovered until the mid-1990, a growing number of studies suggest that over 300 human genes encode microRNAs and that these microRNAs may control gene expression for as much as a third of the human genome, acting as key regulators of processes as diverse as early development, cell proliferation and cell death, and cell differentiation. Some miRNAs are located throughout the body, while others are found only in specific tissue. The miRNA whose surprising new role was discovered by Dr. Sarnow and his colleagues is located only in the liver. The Sarnow team found that miR-122 binds to a specific noncoding binding region in virus, called target 5' NCR. This is the first example of an animal RNA that interacts with its target 5' NCR, and opens an interesting possibility that other viral 5' NCRs are similarly targeted by different miRNAs.

Stanford University has an agreement with Alnylam Pharmaceuticals and Isis Pharmaceuticals to identify novel therapeutic opportunities involving the discovery and development of therapeutic products for hepatitis C virus infection by inhibiting the miR-122 microRNA.

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APA:
Federation of American Societies for Experimental Biology. (2006, April 5). Hepatitis C therapy: Inhibiting newly discovered microDNA molecule. Brightsurf News. https://www.brightsurf.com/news/1WWWZW21/hepatitis-c-therapy-inhibiting-newly-discovered-microdna-molecule.html
MLA:
"Hepatitis C therapy: Inhibiting newly discovered microDNA molecule." Brightsurf News, Apr. 5 2006, https://www.brightsurf.com/news/1WWWZW21/hepatitis-c-therapy-inhibiting-newly-discovered-microdna-molecule.html.