Ikaros mediates the DNA methylation-independent silencing of MCJ/DNAJC15 gene expression in macrophages

Ikaros 介导巨噬细胞中 DNA 甲基化独立的 MCJ/DNAJC15 基因表达沉默

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作者:Nicolás Navasa, Itziar Martin-Ruiz, Estíbaliz Atondo, James D Sutherland, Miguel Angel Pascual-Itoiz, Ana Carreras-González, Hooman Izadi, Julen Tomás-Cortázar, Furkan Ayaz, Natalia Martin-Martin, Iviana M Torres, Rosa Barrio, Arkaitz Carracedo, Elias R Olivera, Mercedes Rincón, Juan Anguita

Abstract

MCJ (DNAJC15) is a mitochondrial protein that regulates the mitochondrial metabolic status of macrophages and their response to inflammatory stimuli. CpG island methylation in cancer cells constitutes the only mechanism identified for the regulation of MCJ gene expression. However, whether DNA methylation or transcriptional regulation mechanisms are involved in the physiological control of this gene expression in non-tumor cells remains unknown. We now demonstrate a mechanism of regulation of MCJ expression that is independent of DNA methylation. IFNγ, a protective cytokine against cardiac inflammation during Lyme borreliosis, represses MCJ transcription in macrophages. The transcriptional regulator, Ikaros, binds to the MCJ promoter in a Casein kinase II-dependent manner, and mediates the repression of MCJ expression. These results identify the MCJ gene as a transcriptional target of IFNγ and provide evidence of the dynamic adaptation of normal tissues to changes in the environment as a way to adapt metabolically to new conditions.

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