A KDM6 inhibitor potently induces ATF4 and its target gene expression through HRI activation and by UTX inhibition

Author:

Kitajima Shojiro,Sun Wendi,Lee Kian Leong,Ho Jolene Caifeng,Oyadomari Seiichi,Okamoto Takashi,Masai Hisao,Poellinger Lorenz,Kato Hiroyuki

Abstract

AbstractUTX/KDM6A encodes a major histone H3 lysine 27 (H3K27) demethylase, and is frequently mutated in various types of human cancers. Although UTX appears to play a crucial role in oncogenesis, the mechanisms involved are still largely unknown. Here we show that a specific pharmacological inhibitor of H3K27 demethylases, GSK-J4, induces the expression of transcription activating factor 4 (ATF4) protein as well as the ATF4 target genes (e.g. PCK2, CHOP, REDD1, CHAC1 and TRIB3). ATF4 induction by GSK-J4 was due to neither transcriptional nor post-translational regulation. In support of this view, the ATF4 induction was almost exclusively dependent on the heme-regulated eIF2α kinase (HRI) in mouse embryonic fibroblasts (MEFs). Gene expression profiles with UTX disruption by CRISPR-Cas9 editing and the following stable re-expression of UTX showed that UTX specifically suppresses the expression of the ATF4 target genes, suggesting that UTX inhibition is at least partially responsible for the ATF4 induction. Apoptosis induction by GSK-J4 was partially and cell-type specifically correlated with the activation of ATF4-CHOP. These findings highlight that the anti-cancer drug candidate GSK-J4 strongly induces ATF4 and its target genes via HRI activation and raise a possibility that UTX might modulate cancer formation by regulating the HRI-ATF4 axis.

Funder

Yamagata prefectural government and Tsuruoka city

Japan Society for the Promotion of Science

the Junwakai Foundation

National Research Foundation Singapore

Ministry of Health -Singapore

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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