DIRAS3 induces autophagy and enhances sensitivity to anti-autophagic therapy in KRAS-driven pancreatic and ovarian carcinomas

· 2024-01-03

Pancreatic ductal adenocarcinoma (PDAC) and low-grade ovarian cancer (LGSOC) are characterized by the prevalence of KRAS oncogene mutations. DIRAS3 is the first endogenous non-RAS protein that heterodimerizes with RAS, disrupts RAS clustering, blocks RAS signaling, and inhibits cancer cell growth. Here, we found that DIRAS3-mediated KRAS inhibition induces ROS-mediated apoptosis in PDAC and LGSOC cells with KRAS mutations, but not in cells with wild-type KRAS, by downregulating NFE2L2/Nrf2 transcription, reducing antioxidants, and inducing oxidative stress. DIRAS3 also induces cytoprotective macroautophagy/autophagy that may protect mutant KRAS cancer cells from oxidative stress, by inhibiting mutant KRAS, activating the STK11/LKB1-PRKAA/AMPK pathway, increasing lysosomal CDKN1B/p27 localization, and inducing autophagic gene expression. Treatment with chloroquine or the novel dimeric chloroquine analog DC661 significantly enhances DIRAS3-mediated inhibition of mutant KRAS tumor cell growth in vitro and in vivo. Taken together, our study demonstrates that DIRAS3 plays a critical role in regulating mutant KRAS-driven oncogenesis in PDAC and LGSOC.
Funding

NCI NIH HHS

P30 CA016672

NCI NIH HHS

P50 CA083639

NCI NIH HHS

P50 CA217685

NCI NIH HHS

R01 CA266187

Cancer Prevention and Research Institute of Texas

RP210028

Cancer Prevention and Research Institute of Texas

RP140429

National Cancer Institute

P30 CA 16672

National Cancer Institute

R01 CA266187

HERA Ovarian Cancer Foundation

MD Anderson Ovarian SPOREs

P50CA83639 and P50CA217685

Ovarian Cancer Research Alliance

Mentored Investigator Award from