Transcriptional Responses to IFN-γ Require Mediator Kinase-Dependent Pause Release and Mechanistically Distinct CDK8 and CDK19 Functions

IFN-γ 的转录反应需要介导激酶依赖的暂停释放以及机制不同的 CDK8 和 CDK19 功能

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作者:Iris Steinparzer ,Vitaly Sedlyarov ,Jonathan D Rubin ,Kevin Eislmayr ,Matthew D Galbraith ,Cecilia B Levandowski ,Terezia Vcelkova ,Lucy Sneezum ,Florian Wascher ,Fabian Amman ,Renata Kleinova ,Heather Bender ,Zdenek Andrysik ,Joaquin M Espinosa ,Giulio Superti-Furga ,Robin D Dowell ,Dylan J Taatjes ,Pavel Kovarik

Abstract

Transcriptional responses to external stimuli remain poorly understood. Using global nuclear run-on followed by sequencing (GRO-seq) and precision nuclear run-on sequencing (PRO-seq), we show that CDK8 kinase activity promotes RNA polymerase II pause release in response to interferon-γ (IFN-γ), a universal cytokine involved in immunity and tumor surveillance. The Mediator kinase module contains CDK8 or CDK19, which are presumed to be functionally redundant. We implemented cortistatin A, chemical genetics, transcriptomics, and other methods to decouple their function while assessing enzymatic versus structural roles. Unexpectedly, CDK8 and CDK19 regulated different gene sets via distinct mechanisms. CDK8-dependent regulation required its kinase activity, whereas CDK19 governed IFN-γ responses through its scaffolding function (i.e., it was kinase independent). Accordingly, CDK8, not CDK19, phosphorylates the STAT1 transcription factor (TF) during IFN-γ stimulation, and CDK8 kinase inhibition blocked activation of JAK-STAT pathway TFs. Cytokines such as IFN-γ rapidly mobilize TFs to "reprogram" cellular transcription; our results implicate CDK8 and CDK19 as essential for this transcriptional reprogramming. Keywords: CDK19; CDK8; Mediator kinase; RNA polymerase II; STAT1; cortistatin A; eRNA; interferon; promoter-proximal pausing; transcription.

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