Asparagine starvation suppresses histone demethylation through iron depletion

天冬酰胺饥饿通过铁消耗抑制组蛋白去甲基化

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作者:Jie Jiang, Sankalp Srivastava, Sheng Liu, Gretchen Seim, Rodney Claude, Minghua Zhong, Sha Cao, Utpal Davé, Reuben Kapur, Amber L Mosley, Chi Zhang, Jun Wan, Jing Fan, Ji Zhang

Abstract

Intracellular α-ketoglutarate is an indispensable substrate for the Jumonji family of histone demethylases (JHDMs) mediating most of the histone demethylation reactions. Since α-ketoglutarate is an intermediate of the tricarboxylic acid cycle and a product of transamination, its availability is governed by the metabolism of several amino acids. Here, we show that asparagine starvation suppresses global histone demethylation. This process is neither due to the change of expression of histone-modifying enzymes nor due to the change of intracellular levels of α-ketoglutarate. Rather, asparagine starvation reduces the intracellular pool of labile iron, a key co-factor for the JHDMs to function. Mechanistically, asparagine starvation suppresses the expression of the transferrin receptor to limit iron uptake. Furthermore, iron supplementation to the culture medium restores histone demethylation and alters gene expression to accelerate cell death upon asparagine depletion. These results suggest that suppressing iron-dependent histone demethylation is part of the cellular adaptive response to asparagine starvation.

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