The research findings, published online today in Cancer Cell (DOI 0.1016/j.ccr.2009.12.050), show how the scientists used a chemical compound to block protein BCL6, the cancer-causing culprit in about half of all non-Hodgkins lymphoma cases, the fifth most common type of cancer in Canadians.
Co-principal investigator Dr. Gilbert Privé, an OCI senior scientist who specializes in analyzing the structure and function of cancer-related proteins, says: “We have identified a new avenue for drug development. It is exciting because until now, the prevailing wisdom has been that cancer proteins such as BCL6 would not respond in this way to chemical manipulation. We have proven otherwise.”
The scientists began their quest using three-dimensional crystallography and computer-aided drug design to filter over one million potential compounds to about 100 that merited further research. They continued narrowing the field, down to 10 and, eventually, to the one compound that proved successful. In lab experiments, there was even better news – not only did the compound kill lymphoma cells, it was also non-toxic.
Dr. Privé explains further: “If you picture cell proteins as a circuit board, we have found a way to short-circuit a defective connection without destroying the entire board. This is the potential of targeted therapy – to kill specific cancer cells and leave healthy cells untouched.”
The U.S. co-principal investigators were Dr. Ari Melnick, Weill Cornell Medical College in New York City and Alex MacKerell, University of Maryland, Baltimore.
The OCI research was funded by the Canadian Cancer Society and the Samuel Waxman Cancer Research Foundation.
Princess Margaret Hospital and its research arm, Ontario Cancer Institute have achieved an international reputation as global leaders in the fight against cancer. Princess Margaret Hospital is a member of the University Health Network, which also includes Toronto General Hospital and Toronto Western Hospital. All three are research hospitals affiliated with the University of Toronto. For more information, go to www.uhn.ca
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