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Kerppola, T. K.

Publications and source records attributed to Kerppola, T. K..

2 recordsLinked to original sources

Keap1 moderates the transcription of virus induced genes through G9a-GLP and NFκB p50 recruitment, and H3K9me2 deposition

Cells must moderate transcription that is induced by virus infection to mitigate deleterious consequences of inflammation. We investigated the mechanisms whereby Keap1 moderates the transcription of genes that are induced by Sendai virus infection in mouse embryo fibroblasts (MEFs). Virus infection induced Keap1 to bind Ifnb1, Tnf and Il6, and reduced Keap1 binding at Cdkn1a and Ccng1. Keap1 was required for G9a and GLP to bind and to deposit H3K9me2 at these genes upon virus infection. Keap1 moderated the transcription of genes that were induced by virus infection in concert with G9a, GLP, and NF[kcy]B p50 recruitment. G9a-GLP lysine methyltransferase activity was required for Keap1 to moderate the transcription of virus induced genes. G9a-GLP inhibitors enhanced the transcription of virus induced genes, and they augmented Keap1 and NF[kcy]B p50 recruitment, in parallel with the inhibition of H3K9me2 deposition. The interdependent effects of Keap1 and G9a-GLP on transcription and on the recruitment of each other constitute a feedback circuit that moderates the transcription of virus induced genes. G9a-GLP inhibitors augmented Keap1 binding to different genes in virus infected and in uninfected MEFs, whereas they inhibited H3K9me2 deposition that was induced by virus infection selectively. G9a-GLP inhibitors stabilized Keap1 retention in permeabilized MEFs and augmented Keap1 binding to specific genes in parallel. Keap1 was required for NF[kcy]B p50 recruitment, and for the augmentation of NF[kcy]B binding by G9a-GLP inhibitors. Keap1 and the electrophile tBHQ attenuated virus induced gene transcription through independent mechanisms, and they regulated the recruitment of different NF[kcy]B subunits. ImportanceExcess and maladaptive immune responses to virus infections are a major contributing factor to the morbidity and mortality of COVID-19 and other diseases. Conversely, inadequate immune responses to vaccines and pathogens by individuals with suppressed immune function expose them to infections. Currently available drugs that enable therapeutic management of immune responses have low specificity and can blunt beneficial immune functions. The molecular mechanisms that moderate the transcription of genes that are induced by virus infection are incompletely understood. Characterization of the mechanisms whereby Keap1, G9a-GLP and NF[kcy]B p50 moderate virus induced gene transcription in mouse embryo fibroblasts represents the first step toward the identification of new targets for therapeutic agents that can modulate immune responsiveness.

immunology↗

Keap1 binds cytokine promoters upon virus infection and moderates their induction by recruiting NFκB p50 and G9a-GLP

Innate immunity requires a balance of positive and negative regulators of cytokine transcription. Keap1 deletion in mice alters innate immunity and inflammation. We investigated the influence of Keap1 on cytokine gene induction by Sendai virus infection in mouse embryo fibroblasts (MEFs). Keap1 bound to the Ifnb1, Tnf and Il6 promoters upon virus infection, and moderated viral induction of their transcription. Keap1 was required for viral induction of NF{kappa}B p50 and G9a-GLP lysine methyltransferase binding to these genes. Keap1 formed BiFC complexes with NF{kappa}B p50 that were localized to the nuclei in a subset of cells. Nrf2 counteracted viral induction of Keap1 binding to the promoters, and the effects of Keap1 on NF{kappa}B p50 and on G9a-GLP recruitment. Lysine methyltransferase inhibitors enhanced viral induction of transcription of the genes that were bound by Keap1 only in MEFs with intact Keap1, and not in Keap1-/- MEFs. They also enhanced NF{kappa}B p50 and NF{kappa}B p65 recruitment to these genes only in MEFs with intact Keap1, whereas they inhibited G9a-GLP recruitment. The reciprocal effects of Keap1 and of G9a-GLP lysine methyltransferase activity on chromatin binding by each other constitute a feedback circuit that moderates viral induction of cytokine transcription. SummaryVirus infection induces Keap1 binding to cytokine promoters, which recruits NF{kappa}B p50 and G9a-GLP and moderates their transcription.

molecular biology↗