March 7, 2018

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Team finds link between BRCA1 and Ewing sarcoma

Scientists with the Greehey Children's Cancer Research Institute at UT Health San Antonio have discovered a surprising connection between a breast cancer protein, BRCA1, and a pediatric cancer called Ewing sarcoma.

Their findings, reported March 7 in the journal Nature, reveal a completely new mechanism by which BRCA1 can be rendered dysfunctional. "The observations raise many new questions about both Ewing and BRCA1 biology," said the study's senior author, Alexander J.R. Bishop, D.Phil., of UT Health San Antonio.

Ewing sarcoma is a pediatric bone and . The median age of Ewing sarcoma patients is 15 years, and more than half of patients are adolescents. "Our team worked to identify why Ewing sarcoma is usually sensitive to standard drugs, with the hope of finding new targets for therapy and revealing new ways to treat the disease if it returns or does not respond to standard therapies," Dr. Bishop said.

Fused genes

Almost all Ewing sarcomas are caused by a rearrangement of two genes that are fused together. The resulting combination of the Ewing sarcoma protein, EWSR1, and another protein, usually FLI1, is called a "fusion oncogene." This bad actor promotes cancer.

The researchers reported in Nature that:

"EWSR1 is like a train conductor who sees damage on the tracks ahead and stops the train," Dr. Bishop said. "BRCA1 is the repair crew who are passengers on the train and go fix the damage when the train stops. But now you've got this mutant bully, this fusion oncogene, who prevents the conductor from being able to stop the train and prevents the repair crew from getting off to work on the tracks."

More information: Aparna Gorthi et al, EWS–FLI1 increases transcription to cause R-loops and block BRCA1 repair in Ewing sarcoma, Nature (2018). DOI: 10.1038/nature25748

Journal information: Nature

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