Abstract Pancreatic ductal adenocarcinoma (PDAC), the most common histological subtype of pancreatic cancer, is a devastating disease predicted to be the second leading cause of cancer deaths by 2040. Despite extensive molecular characterization, therapeutic targeting of this disease remains largely unsuccessful. Thus, an increased understanding of the mechanisms driving malignant features of PDAC is critical for the development of new therapeutic strategies. Of these, cancer cell survival is a central malignant event in PDAC contributing to disease initiation, progression, and response to therapy. To date, the majority of cell survival mechanisms associated with PDAC biology has highlighted the role of cytoplasmic and extracellular factors, making the role of nuclear elements understudied. Our preliminary data has demonstrated evidence of a novel mechanism regulating nuclear envelope stability, a key process contributing to cell survival. Work from our lab has shown that oncogenic KRAS, the major genetic driver of PDAC and present in ∼40% of cases, is sufficient to reduce the incidence of spontaneous nuclear envelope rupture, a measure of nuclear envelope stability. Using laser-induced nuclear envelope rupture revealed the presence of oncogenic KRAS decreases the extent of ruptures, suggesting an axis downstream of oncogenic KRAS is key for regulation of nuclear stability. Analysis of nuclear lamins, key intermediate filaments providing structure to the nuclear envelope, revealed only A-type lamins, not B-type, are associated with overall PDAC survival and enrich at the nuclear periphery downstream of oncogenic KRAS. Furthermore, BioID protein-protein interaction assays to examine the oncogenic KRAS-induced effects on nuclear repair proteins identified an increase in interaction between Lamin A and Emerin. Knock-down of either protein results in increases in nuclear envelope spontaneous ruptures. Together our findings provide a novel oncogenic KRAS-Lamin A-Emerin axis controlling the nuclear stability in PDAC, which can serve as a new therapeutic avenue to improve PDAC treatment outcomes. Citation Format: Kayla C. LaRue-Nolan, Ashley N. Sigafoos, Luis F. Flores, Kyle J. Roux, Martin E. Fernandez-Zapico. The role of Lamin A in pancreatic cancer nuclear envelope stability abstract. In: Proceedings of the AACR Special Conference in Cancer Research: Advances in Pancreatic Cancer Research—Emerging Science Driving Transformative Solutions; Boston, MA; 2025 Sep 28-Oct 1; Boston, MA. Philadelphia (PA): AACR; Cancer Res 2025;85 (18Suppl₃): Abstract nr A059.
LaRue-Nolan et al. (Sun,) studied this question.