Related Experiment Video
Updated: Jan 7, 2026

Author Spotlight: Reprogramming Cancer Cells to iPSCs to Study Disease Progression and Treatment Targets
Published on: February 2, 2024
Aspartate Transaminases Are Dispensable for Pancreatic Development and Pancreatic Cancer Progression
Julia Ugras1, Noah Nelson1, Samuel A Kerk1
1Department of Molecular and Integrative Physiology, University of Michigan, Ann Arbor, MI, USA.
Abstract:
Pancreatic ductal adenocarcinoma (PDA) is the third leading cause of cancer-related deaths in the United States. This is due in part to the limited availability of effective treatment options for patients, highlighting a significant need for new targets and approaches. Deregulated metabolism is a hallmark feature of PDA that has gained attention as a promising inroad for therapy. The aspartate transaminases (glutamate oxaloacetate transaminases, cytosolic GOT1 and mitochondrial GOT2) have several important metabolic functions, including maintaining energy and redox balance and generating aspartate, an essential building block in protein and nucleotide biosynthesis. Previous studies of GOT proteins in preclinical tumor transplant models have yielded conflicting results regarding the requirement of GOT1 and GOT2 for PDA tumor growth. To assess the role of GOT proteins in tumor development and tumor maintenance, we generated conditional knockout mice for Got1 and Got2 and crossed these into pancreas-specific models. Whereas loss of either Got does not impact pancreas development, double Got1 and Got2 knockout results in markedly reduced pancreas size and cellularity without overtly impacting endocrine or exocrine function. In genetically engineered cancer models, single Got loss does not impact lesion formation, tumor size, animal survival, or the composition of the tumor microenvironment. Identical results were also observed in orthotopic allograft mouse models. Together, these findings add to a growing body of work illustrating the adaptability of metabolism in cancer. They also emphasize the importance of model selection, the use of multiple independent models, and the in vivo context when studying the role of metabolic programs in cancer.
Insights
Pancreatic cancer metabolism is adaptable. Aspartate transaminases GOT1 and GOT2 are not essential for pancreatic ductal adenocarcinoma growth, indicating complex metabolic roles in cancer.
Area of Science:
- Oncology
- Metabolic Research
- Cancer Biology
Background:
- Pancreatic ductal adenocarcinoma (PDA) is a deadly cancer with limited treatments.
- Metabolic dysregulation is a key feature of PDA, offering potential therapeutic targets.
- Aspartate transaminases (GOT1 and GOT2) are crucial for cellular metabolism.
Purpose of the Study:
- To investigate the role of GOT1 and GOT2 in pancreatic cancer development and maintenance.
- To resolve conflicting previous findings on GOT protein requirements in PDA.
Main Methods:
- Generated conditional knockout mice for Got1 and Got2.
- Crossed knockout mice into pancreas-specific PDA models.
- Utilized genetically engineered and orthotopic allograft mouse models.
Main Results:
- Loss of either Got1 or Got2 did not affect pancreas development or PDA progression.
- Double knockout of Got1 and Got2 reduced pancreas size but not function.
- Neither single nor double GOT gene loss impacted PDA lesion formation, tumor growth, survival, or tumor microenvironment.
Conclusions:
- GOT1 and GOT2 are not essential for PDA tumor growth or maintenance.
- Cancer metabolism is highly adaptable, suggesting limitations of targeting single metabolic pathways.
- Model selection and in vivo validation are critical for studying cancer metabolism.

