Pancreatic ductal adenocarcinoma (PDAC) is the most common form of pancreatic cancer. It鈥檚 also one of the deadliest. More than 90% of PDAC patients die within five years of diagnosis. Usually, by the time the cancer is identified, it has already spread.
鈥淧DAC is often found too late for treatments like chemotherapy and surgery to be very effective,鈥 黑料吃瓜资源 (CSHL) Professor Adrian Krainer says. 鈥淏ut if we can clearly understand the underlying genetic mechanisms of PDAC, this might lead to earlier diagnoses and new types of therapies.鈥
Krainer and CSHL Postdoc Ledong Wan partnered with CSHL Professor David Tuveson to explore the role of a genetic process called RNA splicing in pancreatic cancer. RNA splicing helps DNA deliver instructions to cells for protein production. The team zeroed in on a splicing-regulator protein called SRSF1. They found that high levels of SRSF1 cause inflammation, or pancreatitis. This jumpstarts PDAC tumor development.
鈥淐ells have several processes to keep SRSF1 levels constant,鈥 says Krainer. 鈥淏ut cancer tends to find a way to overcome these checks and balances.鈥
Several genes, RNAs, and proteins work together in cells to keep SRSF1 levels steady. But sometimes, the process gets disrupted. In the pancreas, this triggers pancreatitis and accelerates PDAC.
鈥淚t鈥檚 a very pronounced effect,鈥 Krainer explains. 鈥淲e could see that patients whose tumors express higher levels of SRSF1 have worse outcomes. So, we set out to explore to what extent SRSF1 contributes to PDAC.鈥
The team found that higher levels of SRSF1 are essential for PDAC growth in mice and organoids鈥攕mall versions of tumors. Furthermore, when SRSF1 returned to normal levels, the organoids stopped growing. SRSF1 is important in healthy tissue, so it may not be an ideal drug target by itself. However, some of the splicing changes it promotes could be targeted instead. Krainer says there is still more work to be done.
鈥淲e鈥檙e excited by these developments,鈥 he says. 鈥淏ut PDAC is a difficult and complicated malignancy. We鈥檙e hoping to provide actionable information for future treatments. This work spearheaded by Ledong is just the tip of the iceberg.鈥
Krainer and Wan鈥檚 collaboration with the Tuveson lab is part of a broader effort to explore pancreas and breast cancer. The initiative also includes CSHL Professors David Spector and Christopher Vakoc.
鈥淭he Krainer lab鈥檚 paradigm-shifting work has led to a deeper understanding of many types of cancer,鈥 says Tuveson, director of the CSHL Cancer Center. 鈥淒r. Wan鈥檚 research reveals an exciting new avenue to understand pancreatic cancer. It reaffirms the importance of basic biological research for the improvement of human health.鈥
Written by: Nick Wurm, Communications Specialist | [email protected] | 516-367-5940
Funding
National Cancer Institute, St. Giles Foundation, National Institutes of Health, The Lustgarten Foundation
Citation
Wan, L., et al., 鈥淪plicing Factor SRSF1 Promotes Pancreatitis and KRASG12D-Mediated Pancreatic Cancer鈥, Cancer Discovery, April 26, 2023. DOI:
Principal Investigator
Adrian R. Krainer
Professor
St. Giles Foundation Professor
Cancer Center Program Co-Leader
Ph.D., Harvard University, 1986