PPARG governs adipogenic differentiation and cell state plasticity in well-differentiated and dedifferentiated liposarcoma
Wilde, B. R.; Klingbeil, K. D.; Day, F.; Dann, C.; Frias, C.; Nakasaki, M.; Dry, S. M.; Eilber, F. C.; Crompton, J. G.; Shackelford, D. B.; Kadera, B. E.; Christofk, H. R.
Show abstract
Well-differentiated and dedifferentiated liposarcoma (WD/DD LPS) represent a pathological continuum, often coexisting within the same tumor. While the dedifferentiated component is clinically aggressive, marked by rapid growth and metastatic potential, the evolutionary relationship between WD and DD LPS remains unknown. To investigate this, we performed single-nucleus RNA sequencing on matched WD and DD tumor regions. Both compartments shared a predominant population of undifferentiated mesenchymal cells, but only WD regions contained cells expressing adipocytic differentiation markers and PPARG target genes. Given the central role of PPARG in coordinating lipid metabolism and mitochondrial biogenesis during adipogenesis, these findings suggest that loss of this program may underlie the poorly differentiated, proliferative phenotype of DD LPS. Functional studies confirmed that PPARG activation in DD LPS cells induces lipid accumulation, reduces proliferation, and impairs tumor growth in vivo. These support a model in which impaired adipogenic differentiation underlies DD LPS pathology and identify PPARG as a potential therapeutic target to promote differentiation and suppress tumor progression. TeaserPPARG reprograms DD liposarcoma toward adipogenesis, reducing proliferation and tumor growth
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Alveolar differentiation drives resistance to KRAS inhibition in lung adenocarcinoma 95%
- Tumor Explants Elucidate a Cascade of Paracrine SHH, WNT, and VEGF Signals Driving Pancreatic Cancer Angiosuppression 95%
- Spatially Resolved Tumor Ecosystems and Cell States in Gastric Adenocarcinoma Progression and Evolution 95%
Similar papers in this journal
- Fiber-type vulnerability and proteostasis reprogramming in skeletal muscle during pancreatic cancer cachexia 94%
- Stabilization of E-cadherin adhesions by COX-2/GSK3β signaling is a targetable pathway in metastatic breast cancer 94%
- Precocious neuronal differentiation and disrupted oxygen responses in Kabuki syndrome 94%
Similar papers in this journal
- The cholesterol biosynthesis enzyme FAXDC2 couples Wnt/beta-catenin to RTK/MAPK signaling 95%
- Targeting EIF4A triggers an interferon response to synergize with chemotherapy and suppress triple-negative breast cancer 95%
- NF2 loss malignantly transforms human pancreatic acinar cells and enhances cell fitness under environmental stress 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.