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IFNβ依赖性增加的 STAT1、STAT2 和 IRF9 介导对病毒和 DNA 损伤的抗性。

IFNβ-dependent increases in STAT1, STAT2, and IRF9 mediate resistance to viruses and DNA damage.

机构信息

Department of Molecular Genetics, Lerner Research Institute, Cleveland Clinic, Cleveland, OH, USA.

出版信息

EMBO J. 2013 Oct 16;32(20):2751-63. doi: 10.1038/emboj.2013.203. Epub 2013 Sep 24.

Abstract

A single high dose of interferon-β (IFNβ) activates powerful cellular responses, in which many anti-viral, pro-apoptotic, and anti-proliferative proteins are highly expressed. Since some of these proteins are deleterious, cells downregulate this initial response rapidly. However, the expression of many anti-viral proteins that do no harm is sustained, prolonging a substantial part of the initial anti-viral response for days and also providing resistance to DNA damage. While the transcription factor ISGF3 (IRF9 and tyrosine-phosphorylated STATs 1 and 2) drives the first rapid response phase, the related factor un-phosphorylated ISGF3 (U-ISGF3), formed by IFNβ-induced high levels of IRF9 and STATs 1 and 2 without tyrosine phosphorylation, drives the second prolonged response. The U-ISGF3-induced anti-viral genes that show prolonged expression are driven by distinct IFN stimulated response elements (ISREs). Continuous exposure of cells to a low level of IFNβ, often seen in cancers, leads to steady-state increased expression of only the U-ISGF3-dependent proteins, with no sustained increase in other IFNβ-induced proteins, and to constitutive resistance to DNA damage.

摘要

单次高剂量的干扰素-β(IFNβ)会激活强大的细胞反应,其中许多抗病毒、促凋亡和抗增殖蛋白被高度表达。由于其中一些蛋白质是有害的,细胞会迅速下调这种初始反应。然而,许多没有危害的抗病毒蛋白的表达得以维持,从而延长了初始抗病毒反应的很大一部分,同时也提供了对 DNA 损伤的抗性。虽然转录因子 ISGF3(IRF9 和酪氨酸磷酸化的 STATs 1 和 2)驱动最初的快速反应阶段,但相关的未磷酸化 ISGF3(U-ISGF3),由 IFNβ 诱导的高水平 IRF9 和 STATs 1 和 2 形成,没有酪氨酸磷酸化,驱动第二个延长的反应。U-ISGF3 诱导的延长表达的抗病毒基因由不同的干扰素刺激反应元件(ISRE)驱动。细胞持续暴露于低水平的 IFNβ,这种情况常见于癌症中,导致仅 U-ISGF3 依赖性蛋白的稳态表达增加,其他 IFNβ 诱导的蛋白没有持续增加,并且对 DNA 损伤产生组成性抗性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd26/3801437/a43432614b5d/emboj2013203f1.jpg

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