Adaptive stimulation of macropinocytosis overcomes aspartate limitation in cancer cells under hypoxia Journal Article


Authors: Garcia-Bermudez, J.; Badgley, M. A.; Prasad, S.; Baudrier, L.; Liu, Y.; La, K.; Soula, M.; Williams, R. T.; Yamaguchi, N.; Hwang, R. F.; Taylor, L. J.; de Stanchina, E.; Rostandy, B.; Alwaseem, H.; Molina, H.; Bar-Sagi, D.; Birsoy, K.
Article Title: Adaptive stimulation of macropinocytosis overcomes aspartate limitation in cancer cells under hypoxia
Abstract: Stress-adaptive mechanisms enable tumour cells to overcome metabolic constraints under nutrient and oxygen shortage. Aspartate is an endogenous metabolic limitation under hypoxic conditions, but the nature of the adaptive mechanisms that contribute to aspartate availability and hypoxic tumour growth are poorly understood. Here we identify GOT2-catalysed mitochondrial aspartate synthesis as an essential metabolic dependency for the proliferation of pancreatic tumour cells under hypoxic culture conditions. In contrast, GOT2-catalysed aspartate synthesis is dispensable for pancreatic tumour formation in vivo. The dependence of pancreatic tumour cells on aspartate synthesis is bypassed in part by a hypoxia-induced potentiation of extracellular protein scavenging via macropinocytosis. This effect is mutant KRAS dependent, and is mediated by hypoxia-inducible factor 1 (HIF1A) and its canonical target carbonic anhydrase-9 (CA9). Our findings reveal high plasticity of aspartate metabolism and define an adaptive regulatory role for macropinocytosis by which mutant KRAS tumours can overcome nutrient deprivation under hypoxic conditions. © 2022, The Author(s), under exclusive licence to Springer Nature Limited.
Keywords: genetics; pancreatic neoplasms; pathology; cell line, tumor; hypoxia; pancreas tumor; tumor cell line; protein p21; proto-oncogene proteins p21(ras); aspartic acid; humans; human
Journal Title: Nature Metabolism
Volume: 4
Issue: 6
ISSN: 2522-5812
Publisher: Nature Publishing Group  
Date Published: 2022-06-01
Start Page: 724
End Page: 738
Language: English
DOI: 10.1038/s42255-022-00583-z
PUBMED: 35726024
PROVIDER: scopus
PMCID: PMC9678334
DOI/URL:
Notes: Article -- Export Date: 1 August 2022 -- Source: Scopus
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