Chromatin accessibility governs the differential response of cancer and T cells to arginine starvation.
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- Study design
- Other primary literature
- Subject
- Human & animal
- Publication year
- 2021
- Source
- doi.org
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- Shown here
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- Active
- Status checked
- 17 Aug 2026
- Collected
- 13 Aug 2026
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- Current
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- Automated
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- Published
Abstract
Depleting the microenvironment of important nutrients such as arginine is a key strategy for immune evasion by cancer cells. Many tumors overexpress arginase, but it is unclear how these cancers, but not T cells, tolerate arginine depletion. In this study, we show that tumor cells synthesize arginine from citrulline by upregulating argininosuccinate synthetase 1 (ASS1). Under arginine starvation, ASS1 transcription is induced by ATF4 and CEBPβ binding to an enhancer within ASS1. T cells cannot induce ASS1, despite the presence of active ATF4 and CEBPβ, as the gene is repressed. Arginine starvation drives global chromatin compaction and repressive histone methylation, which disrupts ATF4/CEBPβ binding and target gene transcription. We find that T cell activation is impaired in arginine-depleted conditions, with significant metabolic perturbation linked to incomplete chromatin remodeling and misregulation of key genes. Our results highlight a T cell behavior mediated by nutritional stress, exploited by cancer cells to enable pathological immune evasion.
MeSH
DOI 10.1016/j.celrep.2021.109101
PMID 33979616
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