Syracuse University research team discovers switch that causes the body to produce cancerous cells

The paper was designated as the “Paper of the Week” in the September 4 issue of the Journal of Biological Chemistry (JBC), published by the American Society for Biochemistry and Molecular Biology. Only the top 1 percent of the more than 6,600 articles published each year in JBC receives this prestigious designation.

The research team is led by biologist Michael Cosgrove, assistant professor in SU's College of Arts and Sciences. Anamika Patel, a post-doctoral researcher in Cosgrove's lab, who is being featured on JBC's website, did much of the experimental work for the paper.

During the course of their research to better understand MLL, a protein switch that helps regulate the formation of white blood cells, Cosgrove's research group discovered a new molecular switch within the MLL complex, which they labeled W-RAD.

“We thought that MLL was the only switching mechanism present in this protein complex,” Cosgrove said. “However, we discovered the complex is really two switches.”

In normal cells, MLL combines with four proteins that comprise the W-RAD group to create a molecular switch that controls DNA packaging events required to form white blood cells. When the MLL switch is broken, white blood cells do not mature properly, resulting in a dangerous proliferation of abnormal cells.

Similarly, the proteins that form the W-RAD complex are overproduced in several types of cancer cells, but until now, scientists did not know the function of these proteins. Cosgrove's group discovered that the W-RAD proteins form a new kind of switch—one that has never been seen before.

“The W-RAD switching mechanism signals the cell to create multiple copies of cancer cells,” Cosgrove says. “If we can find a way to turn off this switch, we might be able to slow or stop the production of abnormal cells and convert them to normal cells.”

In October 2008, Cosgrove's research group broke new ground in leukemia research by identifying a way to attack a broken MLL switch using a synthetic peptide. The peptide may be able to reprogram the way DNA is packaged in leukemia cells and help convert abnormal cells into normal ones. That research was also published in the Journal of Biological Chemistry. In June, Cosgrove received a $720,000 Research Scholar Grant from the American Cancer Society to expand his work in leukemia research.

Media Contact

Judy Holmes EurekAlert!

More Information:

http://www.syr.edu

All latest news from the category: Life Sciences and Chemistry

Articles and reports from the Life Sciences and chemistry area deal with applied and basic research into modern biology, chemistry and human medicine.

Valuable information can be found on a range of life sciences fields including bacteriology, biochemistry, bionics, bioinformatics, biophysics, biotechnology, genetics, geobotany, human biology, marine biology, microbiology, molecular biology, cellular biology, zoology, bioinorganic chemistry, microchemistry and environmental chemistry.

Back to home

Comments (0)

Write a comment

Newest articles

Innovative 3D printed scaffolds offer new hope for bone healing

Researchers at the Institute for Bioengineering of Catalonia have developed novel 3D printed PLA-CaP scaffolds that promote blood vessel formation, ensuring better healing and regeneration of bone tissue. Bone is…

The surprising role of gut infection in Alzheimer’s disease

ASU- and Banner Alzheimer’s Institute-led study implicates link between a common virus and the disease, which travels from the gut to the brain and may be a target for antiviral…

Molecular gardening: New enzymes discovered for protein modification pruning

How deubiquitinases USP53 and USP54 cleave long polyubiquitin chains and how the former is linked to liver disease in children. Deubiquitinases (DUBs) are enzymes used by cells to trim protein…