Stanford scientists turn a cancer driver into a kill switch

Stanford researchers have engineered a two-part molecule that repurposes a cancer-promoting protein to trigger cell death in B-cell lymphoma. This molecular rewiring technique successfully eliminated aggressive tumors in mice and shows potential for treating other cancers and autoimmune diseases.
Why it matters
This innovative approach to 'molecular rewiring' could provide a new therapeutic pathway for treating aggressive cancers that are currently difficult to manage.
Stanford Medicine researchers have developed a two-part molecule that turns a major driver of B-cell lymphoma against the cancer cells that depend on it. In mice, twice-daily treatment with the experimental compound caused aggressive lymphoma tumors to disappear within 11 days.
The work advances a strategy the research team has been developing for years. Instead of simply shutting down a cancer-promoting protein, the scientists designed a small molecule that connects it to another protein capable of activating the cell's built-in death program. The researchers believe this type of molecular rewiring could eventually have applications beyond lymphoma, including other cancers and some autoimmune diseases.
"We're trying to essentially fight cancer with its cause -- taking the driving force of the cancer and then rewiring it to activate cell death mechanisms," said Gerald Crabtree, MD, the David Korn, MD, Professor in Pathology and a professor of developmental biology.
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